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RESEARCH ARTICLE (Open Access)

Ks-band, 2.14-μm Imaging of Southern Massive Star Formation Regions Traced by Methanol Masers

S. N. Longmore A B C D and M. G. Burton A
+ Author Affiliations
- Author Affiliations

A School of Physics, University of New South Wales, Sydney, NSW 2052

B Australia Telescope National Facility, CSIRO, Epping, NSW 1710

C Harvard-Smithsonian Center for Astrophysics, Cambridge, MA 02138, USA

D Corresponding author. Email: slongmore@cfa.harvard.edu

Publications of the Astronomical Society of Australia 26(4) 439-447 https://doi.org/10.1071/AS09017
Submitted: 24 April 2009  Accepted: 11 June 2009   Published: 4 November 2009

Abstract

We present deep, wide-field, Ks-band (2.14-μm) images towards 87 southern massive star formation regions traced by methanol maser emission. Using point-spread function fitting, we generate 2.14-μm point source catalogues (PSCs) towards each of the regions. For the regions between 10° < l < 350° and |b| < 1, we match the 2.14-μm sources with the GLIMPSE point source catalogue to generate a combined 2.14- to 8.0-μm point source catalogue. We provide this data for the astronomical community to utilise in studies of the stellar content of embedded clusters.

Keywords: Galaxy: stellar content, masers — infrared: stars — stars: early type — stars: formation

1 Introduction

Stellar populations towards young star formation regions are deeply embedded within large column densities of molecular gas and dust. Observations at IR wavelengths are particularly powerful for peering into these natal cocoons as they suffer much less from extinction than optical wavelengths and the young stars may also be intrinsically cool. Several excellent large-area IR surveys exist [e.g. 2MASS (Skrutskie et al. 2006), GLIMPSE (Benjamin et al. 2003)], the results from which have significantly advanced our understanding of early phases of cluster formation. However, these surveys are limited to ∼2″ resolution which may be insufficient to resolve the closest cluster members (e.g. Longmore et al. 2006) and the 2MASS Ks-band (2.14-μm) observations are not deep enough to detect the most heavily embedded/reddest objects seen in the GLIMPSE images.

In this work we present 2.14-μm images and photometry for 87 fields associated with massive star formation regions. These were originally targetted due to their IRAS colours in a search for methanol maser emission (Walsh et al. 1997, 1998) and most contain hot molecular cores (Longmore et al. 2007a; Purcell et al. 2006, 2009). By matching source positions with those in existing near-IR (2MASS) and mid-IR (GLIMPSE) catalogues, we have created composite 2.14- to 8-μm catalogues which are typically 3–4 magnitudes deeper at 2.14 μm than 2MASS. Detailed analysis of these regions requires consideration of completeness and confusion etc., which are specific to individual fields — a result of differing levels of differential extinction and source confusion as well as differing sensitivity across the fields. However, we calculate a number of metrics which describe the quality and quantity of the data sets. We provide these catalogues and calibrated images as a resource for the astronomical community.


2 Observations and Data Reduction

The observations were made using IRIS2 1 , 2 (Infrared Imager and Spectrometer 2) on the 3.9-m Anglo-Australian Telescope (AAT) at Siding Spring Observatory using the Ks-band (1.982–2.306 μm) filter. 87 regions were imaged, as listed in Table 1. The images are shown in figures 7 to 92. The observations were taken over several different periods between 2003 and 2006. For each source, a 3 × 3 image grid was created with ∼1′ offsets from the pointing centre. The integration time at each of the nine grid positions was around one minute, with 9 × 6-s exposures. The initial reduction was carried out using a data reduction pipeline provided by the Anglo-Australian Observatory. The detector bias was removed at readout time using the Double Read Mode method. The data were reduced using the in-house orac-dr pipeline with the ‘JITTER_SELF_FLAT_KEEPBAD’ orac-dr 3 recipe to correct for dark current, create flat-field images from star free pixels in the 9 jittered source fields and apply a bad pixel mask to each image. The pipeline then corrects for distortion at the outer edges of the image caused by the slightly curved focal plane. The 9 individual fields of 7.7′ × 7.7′ were finally aligned and mosaiced together to give a 9.7′ × 9.7′ field of view, although only the inner 5.7′ × 5.7′ are covered by all 9 fields. A typical sensitivity in the inner region of an uncrowded field would be expected to be ∼19.6 mag (5σ) in good conditions.


Table 1.  Summary of the data characteristics for each of the regions observed with IRIS2
Click to zoom


3 Other Catalogue Data

3.1 2MASS: 2-Micron All Sky Survey

Using two 1.3 m telescopes in Arizona and Chile, the 2MASS survey scanned the entire sky at the J, H and Ks bands (1.25, 1.65 and 2.17 μm) (Skrutskie et al. 2006). The survey has a 10-σ limiting magnitude of 15.8, 15.1, 14.3 ± 0.03 mag at J, H and Ks respectively with a pixel size of 2.0″ and 0.1″ pointing accuracy. We make use of this data to provide a reference frame for the images as well as to provide the flux calibration.

3.2 GLIMPSE: Galactic Legacy Infrared Mid-Plane Survey Extraordinaire

Using the infrared array camera (IRAC) on-board the Spitzer Space Telescope (SST 7 ), the GLIMPSE survey has observed the galaxy at 3.6, 4.5, 5.8 and 8.0 μm with a 1.2″ pixel size between 10° < |l| < 65° and |b| < 1° (Benjamin et al. 2003). The photometric accuracy is 0.2 and 0.3 mag for bands 1/2 and 3/4 respectively. The astrometric accuracy of the point source catalogue is ∼0.3″. We combine this with the AAT data to construct a source catalogue from 2.14 to 8.0 μm.


4 The Data

Figures 7 to 92 show the IRIS2 2.14-μm images towards each of the regions overlayed with the methanol maser emission from Walsh et al. (1998). Note that in most cases, regions of extinction are readily apparent. Rarely is there a 2 μm point source associated with a methanol maser. In many cases, extensive regions of 2-μm nebulosity are seen. Several targetted regions overlap within a few arcminutes (e.g. G14.99–0.70 and G15.03–0.68 in the vicinity of M17) but each field was imaged independently to ensure uniform coverage (within the observational systematics) in the 5.7′ × 5.7′ inner region of the mosaic with optimum sensitivity (see Section 2).

Table 2 shows an example extract from the first five lines of the IRIS2 Ks-band (2.14-μm) point source catalogue for a sample region. The first two columns give the source right ascension and declination in decimal degrees. Columns 3 and 4 give the magnitude and magnitude uncertainty. Sections 4.1 and 4.2 examine the issues of seeing and completeness in these Ks-band (2.14-μm) PSCs including photometry for these sources.

The FITS images, IRIS2 PSCs and IRIS2/GLIMPSE PSCs for each region are available through the Centre de Données astronomiques de Strasbourg (CDS) 8 . Photometric calibration for the FITS images is provided by the FITS header keyword, ‘MAGZERO’, which gives the magnitude in each image corresponding to a flux count of 1 9 . This is the same value as that given in Column 6 of Table 1.

4.1 Seeing

Figure 4 shows a histogram of the seeing conditions during observations of each of the regions. The majority of regions were observed in seeing of 1.2 to 1.4″, a noticeable improvement on the ∼2″ resolution of both 2MASS and GLIMPSE. The other two plots in Figure 4 show the effects of seeing on the brightest magnitude and number of sources detected. When the seeing is poor, the flux from bright stars is spread over more pixels and brighter stars can be recovered. Given the crowded nature of the observed fields towards the Galactic plane, it is unsurprising that the number of sources detected increases dramatically as the seeing decreases. The inverse linear relation between source counts and seeing suggests the difference in source counts resulting mostly due to the seeing present at the time of each observation.


Figure 4  Left, histogram of seeing conditions during observations of the regions; centre, brightest detected magnitude per region vs. seeing; right, number of sources detected per region vs. seeing.
Click to zoom

4.2 Completeness

Longmore et al. (2007b, hereafter L07B) used artificial star recovery to investigate the spatial variation in point source sensitivity as a function of wavelength for the field associated with G305.2 + 0.2. Having calculated the PSF for each image, a grid of artificial stars of the same magnitude separated by 30″ was placed across the image. The same automated finding technique outlined in Section 2 was then used to calculate how many of the artificial stars were recovered. By shifting the 30 ″ × 30″ grid of artificial stars in small steps through the image, it was possible to measure the completeness at 5 ″ intervals without the PSF of individual artificial stars overlapping. The process was repeated by increasing the artificial star magnitudes in steps of 0.5 mag until no more stars were recovered. By recording the largest recovered magnitude at each position and wavelength it was possible to build a three-dimensional picture of the point source sensitivity across the region. The relative completeness as a function of position was then calculated at each wavelength by subtracting the median completeness magnitude at that wavelength from every position. This method is similar to that used by Gutermuth (2005) in an analysis of completeness limits of Spitzer IRAC data. Through analysis of the results from the artificial star recovery method, L07B found a simpler, empirical method of estimating the 90% completeness limit by calculating the turnover in the histogram of the number of stars as a function of magnitude which yields approximately the same limit as the full analysis. This metric is provided in Table 1, but we stress that a comprehensive analysis of each field would require this completeness limit to be determined individually for each. Figure 5 presents the histogram of this distribution of turnover magnitude.


Figure 5  Histogram of estimated 90% completeness using a simple, empirical method of calculating the turnover in the histogram of the number of stars as a function of magnitude, following L07B.
F5


5 Applications

As an example of what the data has the potential to provide once a full completeness analysis is conducted, we show the results towards G305.2+0.2, as reported by L07B. Figure 6 shows the slope of the spectral energy distribution between 2.14 and 4.5 μm (i.e. α 2.14–4.5) of all sources detected towards 1) a control field using a combined 2MASS/GLIMPSE PSC, 2) the target field using a combined 2MASS/GLIMPSE PSC and 3) the target field using a combined IRIS2/GLIMPSE PSC. The spectral index is related to the categories of young stellar objects (Class I, II, III), with younger sources tending towards larger spectral indexes. In this way the PSC provides a measure of the distribution of evolutionary states of the embedded cluster seen towards G305.2 + 0.2. The considerably more sensitive 2.14-μm IRIS2 images means much more deeply embedded (redder) sources are detected with the IRIS2/GLIMPSE PSC compared to the 2MASS/GLIMPSE PSC. This is obvious in the bottom panel of Figure 6 as a significant increase in the number of sources with α ≥ 0 compared to the middle panel.


Figure 6  Histogram of the distribution of spectral indices (α = d log λ F λ/d log λ) for all sources matched at Ks (2.14 μm) and 4.5 μm towards the region G305.2+0.2 (from Longmore et al. 2007b). The top and central figures show the distribution in the control field and target region respectively, for sources matched in the 2MASS/GLIMPSE PSC. The bottom figure gives the distribution of sources matched in the IRIS2/GLIMPSE PSC of the target region. The considerably more sensitive 2.14-μm IRIS2 images means much more deeply embedded (redder) sources are detected, which is seen in the bottom figure as a significant increase in the number of sources with α ≥ 0.
F6



Acknowledgments

We thank Stuart Ryder for help with the data reduction. S.N.L. was partially funded by an internal grant from UNSW.


References


Benjamin, R. A. 2003, PASP, 115, 953


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Carpenter, J. M. 2001, AJ, 121, 2851
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Gutermuth, R. A. 2005, PhD Thesis, University of Rochester, New York, USA,
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TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor13(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:177)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor14(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:176)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor40(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:170)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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struct
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor41(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:15)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor42(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:12)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor43(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:11)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986.runPage(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:1)
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor150(G:\www\publishha\app\modules\journal\Article.cfc:3230)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor151(G:\www\publishha\app\modules\journal\Article.cfc:3217)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:3216)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfArticle2ecfc1291681887$funcBACKSECTIONSDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:2938)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfgenArticleContent2ecfm782833447._factor5(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:146)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
TYPE CFML
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RAW_TRACE at cfgenArticleContent2ecfm782833447._factor6(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfgenArticleContent2ecfm782833447.runPage(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfStaticPageLayout2ecfm1426351739.runPage(G:\www\publishha\app\views\layout\StaticPageLayout.cfm:10)
TEMPLATE G:\www\publishha\app\views\layout\StaticPageLayout.cfm
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RAW_TRACE at cfCacheController2ecfc639388092$funcRENDERLAYOUT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:30)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLECONTENT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:241)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:327)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENCACHE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:39)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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RAW_TRACE at cfPublishingApp2ecfc536529069$funcPROCESSREQUEST.runFunction(G:\www\publishha\app\PublishingApp.cfc:634)
TEMPLATE G:\www\publishha\app\PublishingApp.cfc
TYPE CFML
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RAW_TRACE at cfBootstrap2ecfc660975501$funcHANDLEREQUEST.runFunction(G:\www\publishha\app\Bootstrap.cfc:16)
TEMPLATE G:\www\publishha\app\Bootstrap.cfc
TYPE CFML
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RAW_TRACE at cfApplication2ecfc757760907$funcONREQUESTSTART.runFunction(G:\www\publishha\webroot\Application.cfc:18)
TEMPLATE G:\www\publishha\webroot\Application.cfc
TYPE CFML



Longmore, S. N., Burton, M. G., Minier, V., &  Walsh, A. J. 2006, MNRAS, 369, 1196
An error has occurred in (ref id="R4"). Variable LPAGE is undefined. [empty string]
array
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LINE 241
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor10(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:241)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor12(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:180)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor13(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:177)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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LINE 176
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor14(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:176)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 170
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor40(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:170)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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struct
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ID CF_INCLUDEJOURNALREF_B
LINE 15
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor41(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:15)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 12
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor42(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:12)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor43(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:11)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986.runPage(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor150(G:\www\publishha\app\modules\journal\Article.cfc:3230)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor151(G:\www\publishha\app\modules\journal\Article.cfc:3217)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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ID CF_ARTICLE
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:3216)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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ID CF_TEMPLATEPROXY
LINE 2938
RAW_TRACE at cfArticle2ecfc1291681887$funcBACKSECTIONSDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:2938)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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ID CF_TEMPLATEPROXY
LINE 146
RAW_TRACE at cfgenArticleContent2ecfm782833447._factor5(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:146)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
TYPE CFML
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RAW_TRACE at cfgenArticleContent2ecfm782833447._factor6(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
TYPE CFML
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RAW_TRACE at cfgenArticleContent2ecfm782833447.runPage(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfStaticPageLayout2ecfm1426351739.runPage(G:\www\publishha\app\views\layout\StaticPageLayout.cfm:10)
TEMPLATE G:\www\publishha\app\views\layout\StaticPageLayout.cfm
TYPE CFML
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RAW_TRACE at cfCacheController2ecfc639388092$funcRENDERLAYOUT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:30)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLECONTENT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:241)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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LINE 327
RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:327)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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LINE 39
RAW_TRACE at cfCacheController2ecfc639388092$funcGENCACHE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:39)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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LINE 634
RAW_TRACE at cfPublishingApp2ecfc536529069$funcPROCESSREQUEST.runFunction(G:\www\publishha\app\PublishingApp.cfc:634)
TEMPLATE G:\www\publishha\app\PublishingApp.cfc
TYPE CFML
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LINE 16
RAW_TRACE at cfBootstrap2ecfc660975501$funcHANDLEREQUEST.runFunction(G:\www\publishha\app\Bootstrap.cfc:16)
TEMPLATE G:\www\publishha\app\Bootstrap.cfc
TYPE CFML
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ID CF_TEMPLATEPROXY
LINE 18
RAW_TRACE at cfApplication2ecfc757760907$funcONREQUESTSTART.runFunction(G:\www\publishha\webroot\Application.cfc:18)
TEMPLATE G:\www\publishha\webroot\Application.cfc
TYPE CFML



Longmore, S. N., Burton, M. G., Barnes, P. J., Wong, T., Purcell, C. R., &  Ott, J. 2007a, MNRAS, 379, 535
An error has occurred in (ref id="R5"). Variable LPAGE is undefined. [empty string]
array
1
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LINE 241
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor10(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:241)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 180
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor12(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:180)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 177
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor13(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:177)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 176
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor14(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:176)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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ID CF_INCLUDEJOURNALREF_B
LINE 170
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor40(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:170)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 15
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor41(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:15)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 12
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor42(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:12)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 11
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor43(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:11)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986.runPage(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor150(G:\www\publishha\app\modules\journal\Article.cfc:3230)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor151(G:\www\publishha\app\modules\journal\Article.cfc:3217)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:3216)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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LINE 2938
RAW_TRACE at cfArticle2ecfc1291681887$funcBACKSECTIONSDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:2938)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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ID CF_TEMPLATEPROXY
LINE 146
RAW_TRACE at cfgenArticleContent2ecfm782833447._factor5(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:146)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
TYPE CFML
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RAW_TRACE at cfgenArticleContent2ecfm782833447._factor6(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
TYPE CFML
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ID CF_GENARTICLECONTENT
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RAW_TRACE at cfgenArticleContent2ecfm782833447.runPage(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
TYPE CFML
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RAW_TRACE at cfStaticPageLayout2ecfm1426351739.runPage(G:\www\publishha\app\views\layout\StaticPageLayout.cfm:10)
TEMPLATE G:\www\publishha\app\views\layout\StaticPageLayout.cfm
TYPE CFML
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LINE 30
RAW_TRACE at cfCacheController2ecfc639388092$funcRENDERLAYOUT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:30)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLECONTENT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:241)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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LINE 327
RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:327)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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COLUMN 0
ID CF_UDFMETHOD
LINE 39
RAW_TRACE at cfCacheController2ecfc639388092$funcGENCACHE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:39)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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COLUMN 0
ID CF_CFPAGE
LINE 634
RAW_TRACE at cfPublishingApp2ecfc536529069$funcPROCESSREQUEST.runFunction(G:\www\publishha\app\PublishingApp.cfc:634)
TEMPLATE G:\www\publishha\app\PublishingApp.cfc
TYPE CFML
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ID CF_TEMPLATEPROXY
LINE 16
RAW_TRACE at cfBootstrap2ecfc660975501$funcHANDLEREQUEST.runFunction(G:\www\publishha\app\Bootstrap.cfc:16)
TEMPLATE G:\www\publishha\app\Bootstrap.cfc
TYPE CFML
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COLUMN 0
ID CF_TEMPLATEPROXY
LINE 18
RAW_TRACE at cfApplication2ecfc757760907$funcONREQUESTSTART.runFunction(G:\www\publishha\webroot\Application.cfc:18)
TEMPLATE G:\www\publishha\webroot\Application.cfc
TYPE CFML



Longmore, S. N., Maercker, M., Ramstedt, S., &  Burton, M. G. 2007b, MNRAS, 380, 1497
An error has occurred in (ref id="R6"). Variable LPAGE is undefined. [empty string]
array
1
struct
COLUMN 0
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LINE 241
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor10(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:241)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 180
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor12(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:180)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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ID CF_INCLUDEJOURNALREF_B
LINE 177
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor13(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:177)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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COLUMN 0
ID CF_INCLUDEJOURNALREF_B
LINE 176
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor14(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:176)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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COLUMN 0
ID CF_INCLUDEJOURNALREF_B
LINE 170
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor40(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:170)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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COLUMN 0
ID CF_INCLUDEJOURNALREF_B
LINE 15
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor41(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:15)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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COLUMN 0
ID CF_INCLUDEJOURNALREF_B
LINE 12
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor42(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:12)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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COLUMN 0
ID CF_INCLUDEJOURNALREF_B
LINE 11
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor43(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:11)
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986.runPage(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:1)
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor150(G:\www\publishha\app\modules\journal\Article.cfc:3230)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor151(G:\www\publishha\app\modules\journal\Article.cfc:3217)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:3216)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfArticle2ecfc1291681887$funcBACKSECTIONSDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:2938)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfgenArticleContent2ecfm782833447._factor5(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:146)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfgenArticleContent2ecfm782833447._factor6(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfgenArticleContent2ecfm782833447.runPage(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
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RAW_TRACE at cfStaticPageLayout2ecfm1426351739.runPage(G:\www\publishha\app\views\layout\StaticPageLayout.cfm:10)
TEMPLATE G:\www\publishha\app\views\layout\StaticPageLayout.cfm
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RAW_TRACE at cfCacheController2ecfc639388092$funcRENDERLAYOUT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:30)
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLECONTENT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:241)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:327)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENCACHE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:39)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
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RAW_TRACE at cfPublishingApp2ecfc536529069$funcPROCESSREQUEST.runFunction(G:\www\publishha\app\PublishingApp.cfc:634)
TEMPLATE G:\www\publishha\app\PublishingApp.cfc
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RAW_TRACE at cfBootstrap2ecfc660975501$funcHANDLEREQUEST.runFunction(G:\www\publishha\app\Bootstrap.cfc:16)
TEMPLATE G:\www\publishha\app\Bootstrap.cfc
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RAW_TRACE at cfApplication2ecfc757760907$funcONREQUESTSTART.runFunction(G:\www\publishha\webroot\Application.cfc:18)
TEMPLATE G:\www\publishha\webroot\Application.cfc
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Purcell, C. R., et al. 2006, MNRAS, 367, 553
An error has occurred in (ref id="R7"). Variable LPAGE is undefined. [empty string]
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LINE 241
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor10(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:241)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor12(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:180)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor13(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:177)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor14(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:176)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor40(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:170)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor41(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:15)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor42(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:12)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor43(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:11)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986.runPage(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor150(G:\www\publishha\app\modules\journal\Article.cfc:3230)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor151(G:\www\publishha\app\modules\journal\Article.cfc:3217)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:3216)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
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RAW_TRACE at cfArticle2ecfc1291681887$funcBACKSECTIONSDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:2938)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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RAW_TRACE at cfgenArticleContent2ecfm782833447._factor5(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:146)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfgenArticleContent2ecfm782833447._factor6(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfgenArticleContent2ecfm782833447.runPage(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfStaticPageLayout2ecfm1426351739.runPage(G:\www\publishha\app\views\layout\StaticPageLayout.cfm:10)
TEMPLATE G:\www\publishha\app\views\layout\StaticPageLayout.cfm
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RAW_TRACE at cfCacheController2ecfc639388092$funcRENDERLAYOUT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:30)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLECONTENT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:241)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:327)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENCACHE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:39)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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RAW_TRACE at cfPublishingApp2ecfc536529069$funcPROCESSREQUEST.runFunction(G:\www\publishha\app\PublishingApp.cfc:634)
TEMPLATE G:\www\publishha\app\PublishingApp.cfc
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RAW_TRACE at cfBootstrap2ecfc660975501$funcHANDLEREQUEST.runFunction(G:\www\publishha\app\Bootstrap.cfc:16)
TEMPLATE G:\www\publishha\app\Bootstrap.cfc
TYPE CFML
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LINE 18
RAW_TRACE at cfApplication2ecfc757760907$funcONREQUESTSTART.runFunction(G:\www\publishha\webroot\Application.cfc:18)
TEMPLATE G:\www\publishha\webroot\Application.cfc
TYPE CFML



Purcell, C. R., Longmore, S. N., Burton, M. G., Walsh, A. J., Minier, V., Cunningham, M. R., &  Balasubramanyam, R. 2009, MNRAS, 394, 323
An error has occurred in (ref id="R8"). Variable LPAGE is undefined. [empty string]
array
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LINE 241
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor10(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:241)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor12(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:180)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor13(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:177)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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LINE 176
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor14(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:176)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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LINE 170
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor40(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:170)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor41(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:15)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor42(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:12)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor43(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:11)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986.runPage(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor150(G:\www\publishha\app\modules\journal\Article.cfc:3230)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor151(G:\www\publishha\app\modules\journal\Article.cfc:3217)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:3216)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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LINE 2938
RAW_TRACE at cfArticle2ecfc1291681887$funcBACKSECTIONSDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:2938)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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LINE 146
RAW_TRACE at cfgenArticleContent2ecfm782833447._factor5(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:146)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfgenArticleContent2ecfm782833447._factor6(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfgenArticleContent2ecfm782833447.runPage(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
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RAW_TRACE at cfStaticPageLayout2ecfm1426351739.runPage(G:\www\publishha\app\views\layout\StaticPageLayout.cfm:10)
TEMPLATE G:\www\publishha\app\views\layout\StaticPageLayout.cfm
TYPE CFML
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RAW_TRACE at cfCacheController2ecfc639388092$funcRENDERLAYOUT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:30)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLECONTENT.runFunction(G:\www\publishha\app\controller\CacheController.cfc:241)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENARTICLE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:327)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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RAW_TRACE at cfCacheController2ecfc639388092$funcGENCACHE.runFunction(G:\www\publishha\app\controller\CacheController.cfc:39)
TEMPLATE G:\www\publishha\app\controller\CacheController.cfc
TYPE CFML
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LINE 634
RAW_TRACE at cfPublishingApp2ecfc536529069$funcPROCESSREQUEST.runFunction(G:\www\publishha\app\PublishingApp.cfc:634)
TEMPLATE G:\www\publishha\app\PublishingApp.cfc
TYPE CFML
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LINE 16
RAW_TRACE at cfBootstrap2ecfc660975501$funcHANDLEREQUEST.runFunction(G:\www\publishha\app\Bootstrap.cfc:16)
TEMPLATE G:\www\publishha\app\Bootstrap.cfc
TYPE CFML
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LINE 18
RAW_TRACE at cfApplication2ecfc757760907$funcONREQUESTSTART.runFunction(G:\www\publishha\webroot\Application.cfc:18)
TEMPLATE G:\www\publishha\webroot\Application.cfc
TYPE CFML



Skrutskie, M. F., et al. 2006, AJ, 131, 1163
An error has occurred in (ref id="R9"). Variable LPAGE is undefined. [empty string]
array
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LINE 241
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor10(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:241)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 180
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor12(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:180)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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LINE 177
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor13(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:177)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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LINE 176
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor14(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:176)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 170
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor40(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:170)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 15
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor41(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:15)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
TYPE CFML
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LINE 12
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor42(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:12)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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LINE 11
RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986._factor43(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:11)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfincludeJournalRef_B2ecfm1510229986.runPage(G:\www\publishha\app\views\journal\includeJournalRef_B.cfm:1)
TEMPLATE G:\www\publishha\app\views\journal\includeJournalRef_B.cfm
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor150(G:\www\publishha\app\modules\journal\Article.cfc:3230)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1._factor151(G:\www\publishha\app\modules\journal\Article.cfc:3217)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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ID CF_ARTICLE
LINE 3216
RAW_TRACE at cfArticle2ecfc1291681887$funcREFERENCESDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:3216)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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COLUMN 0
ID CF_TEMPLATEPROXY
LINE 2938
RAW_TRACE at cfArticle2ecfc1291681887$funcBACKSECTIONSDTD1.runFunction(G:\www\publishha\app\modules\journal\Article.cfc:2938)
TEMPLATE G:\www\publishha\app\modules\journal\Article.cfc
TYPE CFML
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LINE 146
RAW_TRACE at cfgenArticleContent2ecfm782833447._factor5(G:\www\publishha\app\views\journal\generator\genArticleContent.cfm:146)
TEMPLATE G:\www\publishha\app\views\journal\generator\genArticleContent.cfm
TYPE CFML
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Walsh, A. J., Hyland, A. R., Robinson, G., &  Burton, M. G. 1997, MNRAS, 291, 261
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Walsh, A. J., Burton, M. G., Hyland, A. R., &  Robinson, G. 1998, MNRAS, 301, 640
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1 IRIS2 employs a 1024 × 1024 Rockwell HAWAII-1 HgCdTe infrared detector with a plate scale of 0.4486 ± 0.0002″ per pixel.

2 See http://www.aao.gov.au .

3 See http://www.oracdr.org .

4 http://www.atnf.csiro.au/computing/software/karma/ .

5 http://iraf.noao.edu/ .

6 http://www.astro.caltech.edu/~jmc/2mass/v3/transformations/ .

7 http://ssc.spitzer.caltech.edu/ .

8 http://cds.u-strasbg.fr/ .

9 i.e. m = m ZP – 2.5 log f, where f is the number of counts determined for a source of interest in the FITS images.



6 Appendix

Table 1 shows the properties of the IRIS2 2.14-μm PSCs for all the observed regions. Tables 2 and 3 show the first five lines of a sample IRIS2 2.14-μm PSC and a sample combined IRIS2/GLIMPSE PSC, respectively, with the full tables available online.


Table 3.  Example extract from the catalogue of sources matched between the IRIS2 Ks-band images and the GLIMPSE point-source catalogue
Click to zoom

In Table 1 Columns 1 and 2 give the Galactic and IRAS names of the far-IR sources whose fields have been imaged. Columns 3 and 4 give the R.A. and Dec. of the associated methanol masers from Walsh et al. (1998). Columns 5 to 13 show the parameters returned from the automated source extraction algorithm using daophot (see Section 6.1 for more details). σ ZP gives the standard deviation of the difference between the measured IRIS2 and 2MASS magnitudes (in the range 10–12 mag). ZP gives the magnitude corresponding to 1 flux count in each image. This may be used to calibrate the FITS image for each source, as described in Section 4. Min, Med and Max give the minimum, median and maximum magnitudes of sources in each region. σ med gives the median point-source fitting error in each region. Minrel gives the minimum reliable IRIS2 magnitude measurement, sources brighter than which are likely to be affected by saturation. Columns 12 and 13 show the 90% completeness magnitude estimated from the magnitude histogram and the total number of sources detected in each IRIS2 field, respectively. The final column lists the FWHM of the seeing in arcsec.

In Table 3 the first column gives the GLIMPSE ID number. The second and third columns give the source right ascension and declination in decimal degrees. Columns 4 and 5 give the magnitude and magnitude error of the sources at Ks band. Columns 6 through 13 give the magnitude and magnitude error of the sources at 3.6, 4.5, 5.8 and 8.0 μm from the GLIMPSE point source catalogue. In this example table, the magnitudes and errors have been rounded to 2 decimal places for clarity. A value of ‘null’ means no source was detected at that wavelength. The full table is available online. Note that these PSCs ONLY include sources matched in both the GLIMPSE and IRIS2 Ks catalogues. Photometry for sources detected only in the IRIS Ks PSC (likely fainter foreground stars) or GLIMPSE PSC (either due to being too faint, or possibly in saturated/confused regions) can be extracted from these individual PSCs. Finally, photometry for sources in the IRIS2 Ks PSC brighter than the minimum reliable magnitude reported in Column 11 of Table 1, should be extracted from the 2MASS PSC.

Finally, Section 6.1 describes in detail how the daophot package (digi.daophot) in iraf was used to automatically find and perform photometry on stars within the IRIS2 fields and hence create the point source catalogues.

6.1 Creating the Point-Source Catalogues

This section describes how the daophot package (digi.daophot) in iraf was used to automatically find and perform photometry on stars within the IRIS2 fields and hence create the point source catalogues. Description of coordinate-frame calibration, photometric calibration and catalogue matching are found in Section 2.

6.1.1 Set Initial Fitting Parameters

As three separate detector arrays were used over the course of the observations care was taken to measure the array specific input parameters (e.g. readout noise, gain, saturation value, etc.) for each image. The image characteristics used by the star finding and photometry tasks were calculated using daoedit to pick out 10 bright, non-saturated, isolated stars with as little surrounding extended emission as possible. By fitting a radial profile to the emission, this task then calculates the FWHM, SKY (median) and σ SKY for each of the stars. After calculating a sensible average value for each of these parameters from stars with good profiles, the values are then entered into several ‘pars’ tasks (which act as inputs into the finding/photometry tasks) as follows:

  • epar datapars:

  • fwhmpsf = FWHM;

  • sigma = σ SKY;

  • datamin = SKY – (6 × σ SKY);

  • datamax = ‘saturation value’ (must be less than max value i.e. max ‘good’ data value);

  • epar centerpars:

  • cbox = 2 × FWHM or 5 (whichever is larger);

  • epar fitskypars:

  • salgori = mode (for crowded images);

  • annulus = 4 × FWHM;

  • dannulus = 3.5 × FWHM;

  • epar photpars:

  • aperture = 1 × FWHM;

  • epar daopars:

  • psfrad = (4 × FWHM) + 1;

  • fitrad = 1 × FWHM or 3 (whichever is larger).

6.1.2 Intial Star List

After calculating the image parameters, the initial (first-pass) star list was created using the daofind task to run the search finding algorithm. This task was run several times using different detection thresholds between 3 and 5σ and compared by eye to maximise finding fainter stars and excluding noise.

6.1.3 Initial Photometry

Photometry of the stars in the first-pass list was calculated using daofind. Stars dumped by the task due to poor fits were manually checked to ensure no real stars were dropped. In practice, the dumped stars were either low signal noise spikes or saturated stars.

6.1.4 Calculating the Point Spread Function

The task pstselect was used to select 10 bright, non-saturated, isolated stars across the image to calculate the PSF. A characteristic PSF for the image was then calculated from these PSF stars. The robustness of the PSF was checked by subtracting the characteristic PSF from the 10 selected stars and their nearest neighbours and inspecting the residuals. In an iterative process, bad PSF stars were removed and the procedure repeated until good residuals were seen across the image meaning a reliable characteristic PSF for that image had been obtained.

6.1.5 Extracting the Stars and Fitting World Coordinates

Once the optimal image parameters and characteristic PSF had been obtained, the PSF model was fit to all the stars using allstar. The residuals after the PSF subtraction were carefully checked to ensure both bright and faint stars across the image had been successfully subtracted. The star coordinates were converted from pixels to world coordiates using wcsctran.