Register      Login
Australian Journal of Physics Australian Journal of Physics Society
A journal for the publication of original research in all branches of physics

Articles citing this paper

An Investigation of the Accuracy of Numerical Solutions of Boltzmann's Equation for Electron Swarms in Gases with Large Inelastic Cross Sections

Ivan D Reid
32(3) pp.231 - 254


147 articles found in Crossref database.

Parallel Computational Fluid Dynamics 1998 (1999)
Huang Kuo-Chan, Tsai Jyun-Hwei
Self-consistent modelling of low-pressure RF discharges in oxygen plasma
Feoktistov V A, Mukhovatova A V, Popov A M, Rakhimova T V
Journal of Physics D: Applied Physics. 1995 28(7). p.1346
Simulation benchmarks for low-pressure plasmas: Capacitive discharges
Turner M. M., Derzsi A., Donkó Z., Eremin D., Kelly S. J., Lafleur T., Mussenbrock T.
Physics of Plasmas. 2013 20(1).
Particle Propagation and Electron Transport in Gases
Vialetto Luca, Sugawara Hirotake, Longo Savino
Plasma. 2024 7(1). p.121
Modification of the electron velocity distribution function in weakly ionized plasmas by nonisotropic elastic-scattering processes
Winkler R., Braglia G. L., Wilhelm J.
Il Nuovo Cimento D. 1988 10(9). p.1031
Diffusion tensor of electron swarm in electric field in gases. II. The influence of the conservative inelastic collisions
Makabe T, Shimoyama M
Journal of Physics D: Applied Physics. 1986 19(12). p.2301
Trajectory Analyses of Electron Transport Properties under Anisotropy in Elastic and Inelastic Scatterings
Yokoyama Ryuichi, Gotoda Hiroaki, Yamamoto Kohji, Ikuta Nobuaki
Journal of the Physical Society of Japan. 1994 63(7). p.2592
Relaxation processes of electrons and positrons in gases in electric and magnetic fields crossed at arbitrary angles
Dujko S, White R D, Ness K F, Robson R E, Petrovič Z L
Journal of Physics: Conference Series. 2008 115 p.012017
Effects of Anisotropic Scattering on the Drift Velocity Maximum
Yamamoto Kohji
Journal of the Physical Society of Japan. 1994 63(9). p.3193
Electron Swarm Coefficients in $\hbox{CO}_{2}$–$\hbox{N}_{2}$ and $\hbox{CO}_{2}$–$\hbox{O}_{2}$ Mixtures
Yousfi M., de Urquijo J., Juarez A., Basurto E., Hernandez-Avila J.L.
IEEE Transactions on Plasma Science. 2009 37(6). p.764
The LisbOn KInetics Boltzmann solver
Tejero-del-Caz A, Guerra V, Gonçalves D, da Silva M Lino, Marques L, Pinhão N, Pintassilgo C D, Alves L L
Plasma Sources Science and Technology. 2019 28(4). p.043001
Benchmark calculations for anisotropic scattering in kinetic models for low temperature plasma
Flynn M, Vialetto L, Fierro A, Neuber A, Stephens J
Journal of Physics D: Applied Physics. 2024 57(25). p.255204
Non-equilibrium radial and axial transport in RF glow discharges
Tsai Jyun-Hwei, Wu Chwan-Hwa John
Journal of Physics D: Applied Physics. 1993 26(3). p.496
Assessment of the self-consistency of electron-THF cross sections using electron swarm techniques: Mixtures of THF–Ar and THF–N2
de Urquijo J., Casey M. J. E., Serkovic-Loli L. N., Cocks D. G., Boyle G. J., Jones D. B., Brunger M. J., White R. D.
The Journal of Chemical Physics. 2019 151(5).
Developing high-performance scientific applications in distributed computing environments
Proceedings of the Fifth IEEE Computer Society Workshop on Future Trends of Distributed Computing Systems (1995)
Kuo-Chan Huang , Pei-Chi Wu , Feng-Jian Wang
Benchmark for the Determination of the Positronium Formation Fraction in Interstellar Media
Cocks Daniel G., Chaudhary Himanshu, Machacek Joshua R.
The Astrophysical Journal. 2019 878(2). p.123
Stochastic dynamic simulation of the Boltzmann equation for electron swarms in glow discharges
Lymberopoulos Dimitris P., Schieber Jay D.
Physical Review E. 1994 50(6). p.4911
Low-energy electron scattering cross sections in carbon dioxide
Haddad G N, Elford M T
Journal of Physics B: Atomic and Molecular Physics. 1979 12(23). p.L743
Comparison of the results of Monte Carlo simulations with experimental data for electron swarms in from moderate to very high electric field to gas density ratios
Stojanovic V D, Petrovic Z Lj
Journal of Physics D: Applied Physics. 1998 31(7). p.834
Using Swarm Models as an Exact Representation of Ionized Gases
Petrović Zoran Lj., Marić Dragana, Savić Marija, Marjanović Srđan, Dujko Saša, Malović Gordana
Plasma Processes and Polymers. 2017 14(1-2).
Diffusion of electrons in time-dependentE(t)×B(t) fields
Raspopovic Zoran, Sakadzic Sava, Petrovic Zoran Lj, Makabe Toshiaki
Journal of Physics D: Applied Physics. 2000 33(11). p.1298
A three-term Boltzmann equation analysis of electron swarms in gases for the time-of-flight condition
Itoh H, Kawaguchi M, Takada M, Nakao Y, Tagashira H
Journal of Physics D: Applied Physics. 1989 22(8). p.1095
Electron-neutral collision cross sections for H2O: II. Anisotropic scattering and assessment of the validity of the two-term approximation
Budde Maik, Dias Tiago Cunha, Vialetto Luca, Pinhão Nuno, Guerra Vasco, Silva Tiago
Journal of Physics D: Applied Physics. 2023 56(25). p.255201
Structures of velocity distribution functions and transport parameters of the electron swarm in CH4in a DC electric field
Shimura N, Makabe T
Journal of Physics D: Applied Physics. 1992 25(5). p.751
Computer simulation study of correspondence between experimental and theoretical electron drift velocities in CH4gas
Satoh K, Ohmori Y, Sakai Y, Tagashira H
Journal of Physics D: Applied Physics. 1991 24(8). p.1354
Benchmark simulations for electron swarms in crossed electric and magnetic fields
White R D, Brennan M J, Ness K F
Journal of Physics D: Applied Physics. 1997 30(5). p.810
Modeling of Townsend discharges at high E/N and low pressure
Stojanović V D
Journal of Physics: Conference Series. 2008 133 p.012008
New perturbation expansion for anisotropic electron-velocity distribution functions in weakly ionized plasmas
Friedland L., Eizenkiet H.
Physical Review A. 1987 36(3). p.1351
Variation of Electron Transport Properties Near NDC Region and the Effects of Anisotropic Scattering
Yamamoto Kohji, Ikuta Nobuaki
Journal of the Physical Society of Japan. 1999 68(8). p.2602
Multi-term solution of the Boltzmann equation for electron swarms in crossed electric and magnetic fields
Ness K F
Journal of Physics D: Applied Physics. 1994 27(9). p.1848
Comment of the possibility of Ramsauer-Townsend minima ine-H2ande-N2scattering
Crompton Robert W., Morrison Michael A.
Physical Review A. 1982 26(6). p.3695
Velocity distribution function and transport coefficients of electron swarms in gases. II. Moment equations and applications
Ness K. F., Robson R. E.
Physical Review A. 1986 34(3). p.2185
On the use of classical transport analysis to determine cross-sections for low-energy e-H2vibrational excitation
White R D, Morrison Michael A, Mason B A
Journal of Physics B: Atomic, Molecular and Optical Physics. 2002 35(3). p.605
The LisbOn KInetics Monte Carlo solver
Dias Tiago C., Tejero-del-Caz Antonio, Alves Luís L., Guerra Vasco
Computer Physics Communications. 2023 282 p.108554
A new multi-term solution technique for the electron Boltzmann equation of weakly ionized steady-state plasmas
Leyh H., Loffhagen D., Winkler R.
Computer Physics Communications. 1998 113(1). p.33
Time evolution of ion swarm transport in a constant mean free time encounter region
Makabe T, Misawa K, Mori T
Journal of Physics D: Applied Physics. 1983 16(10). p.1893
Electron swarm characteristic energies (Dr/μ) in tetrafluoromethane (CF4) at low E/N
Curtis M G, Walker I C, Mathieson K J
Journal of Physics D: Applied Physics. 1988 21(8). p.1271
Boltzmann equation analysis of electron swarm behaviour in methane
Ohmori Y, Kitamori K, Shimozuma M, Tagashira H
Journal of Physics D: Applied Physics. 1986 19(3). p.437
Effective ionization coefficients and transport parameters in binary and ultradilute SF6–Ar mixtures using Boltzmann equation analysis
Cekmen Z C, Dincer M S
Journal of Physics D: Applied Physics. 2009 42(14). p.145208
Monte Carlo simulation of electron drift and diffusion in counting gases under the influence of electric and magnetic fields
Biagi S.F.
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 1999 421(1-2). p.234
Comparisons between different methods of solution of the Boltzmann equation adapted to the calculation of swarm parameters in a weakly ionised medium
Segur P, Yousfi M, Bordage M C
Journal of Physics D: Applied Physics. 1984 17(11). p.2199
Heating mechanisms for electron swarms in radio-frequency electric and magnetic fields
Dujko S, Bošnjaković D, White R D, Lj Petrović Z
Plasma Sources Science and Technology. 2015 24(5). p.054006
Third-order transport coefficient tensor of charged-particle swarms in electric and magnetic fields
Simonović I., Bošnjaković D., Petrović Z. Lj., Stokes P., White R. D., Dujko S.
Physical Review E. 2020 101(2).
METHES: A Monte Carlo collision code for the simulation of electron transport in low temperature plasmas
Rabie M., Franck C.M.
Computer Physics Communications. 2016 203 p.268
Electron Collision Cross Sections for the TRIES Molecule and Electron Transport Coefficients in TRIES-Ar and TRIES-O2 Mixtures
Tuoi Phan Thi, Tuan Do Anh, Hien Pham Xuan
Journal of the Korean Physical Society. 2018 73(12). p.1855
Accurate solution of the Boltzmann transport equation
Biagi S.F.
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 1988 273(2-3). p.533
Spatiotemporal electron dynamics in radio-frequency glow discharges: fluid versus dynamic Monte Carlo simulations
Lymberopoulos D P, Economou D J
Journal of Physics D: Applied Physics. 1995 28(4). p.727
A technology demonstration of propagator matrix power method for calculation of electron velocity distribution functions in gas in long-term transient and succeeding equilibrium states under dc electric fields
Sugawara Hirotake, Iwamoto Hikaru
Japanese Journal of Applied Physics. 2021 60(4). p.046001
Effect of the magnetic field on the electron kinetics under AC/DC electric fields: benchmark calculations and electron cyclotron resonance
Dias Tiago C, Pintassilgo Carlos D, Guerra Vasco
Plasma Sources Science and Technology. 2023 32(9). p.095003
An analysis of transverse evolution of electron swarms in gases using moment equations and a propagator method
Sugawara Hirotake, Sakai Y
Journal of Physics D: Applied Physics. 1999 32(14). p.1671
Charged-particle transport in gases in electric and magnetic fields crossed at arbitrary angles: Multiterm solution of Boltzmann’s equation
White R. D., Ness K. F., Robson R. E., Li B.
Physical Review E. 1999 60(2). p.2231
Energy distributions of electrons in a low-current self-sustained nitrogen discharge
Vrhovac S. B., Stojanović V. D., Jelenković B. M., Petrović Z. Lj.
Journal of Applied Physics. 2001 90(12). p.5871
Excitation by electrons and fast neutrals in nitrogen discharges at very high electric field to gas number density ratios
Stojanović V. D., Jelenković B. M., Petrović Z. Lj.
Journal of Applied Physics. 1997 81(3). p.1601
Swarm Studies and Inelastic Electron-Molecule Collisions (1987)
Ségur Pierre, Bordage M.-C., Yousfi M.
Modeling of back diffusion of electrons in argon
Radmilović M., Petrović Z. Lj.
The European Physical Journal Applied Physics. 2000 11(1). p.35
Radiofrequency electron swarm transport in reactive gases and plasmas
Maeda K, Makabe T
Physica Scripta. 1994 T53 p.61
Rate coefficients for resonant vibrational excitation of CO
Ristić M., Poparić G.B., Belić D.S.
Chemical Physics. 2007 336(1). p.58
Non-equilibrium of charged particles in swarms and plasmas—from binary collisions to plasma effects
Petrović Z Lj, Simonović I, Marjanović S, Bošnjaković D, Marić D, Malović G, Dujko S
Plasma Physics and Controlled Fusion. 2017 59(1). p.014026
Moment Theory of Ion-Neutral Reactions in Traps and Similar Devices
Viehland Larry A., Danailov Daniel M., Goeringer Douglas E.
The Journal of Physical Chemistry A. 2007 111(15). p.2820
Modeling of thermalization of fast electrons in nitrogen at low pressures
Petrović Z Lj, Stojanović V, Nikitović Ž
Plasma Sources Science and Technology. 2009 18(3). p.034017
An efficient solution of the multi-term multi-harmonic electron Boltzmann equation for use in global models
Lynch Joel E., Sippel Travis R., Subramaniam Shankar
Computer Physics Communications. 2024 299 p.109156
Anisotropic scattering of electrons byN2and its effect on electron transport
Phelps A. V., Pitchford L. C.
Physical Review A. 1985 31(5). p.2932
Diffusion tensor in electron transport in gases in a radio-frequency field
Maeda Kenji, Makabe Toshiaki, Nakano Nobuhiko, Bzenic-acute Svetlan, Petrovic-acute Zoran Lj.
Physical Review E. 1997 55(5). p.5901
Monte Carlo and Boltzmann two-term calculations of electron transport in CO2
Braglia G. L., Romanò L.
Lettere Al Nuovo Cimento Series 2. 1984 40(17). p.513
Electron-velocity distribution functions in gases: The influence of anisotropic scattering and electron nonconservation by attachment and ionization
Blevin H. A., Fletcher J., Hunter S. R.
Physical Review A. 1985 31(4). p.2215
Configuration of propagator method for calculation of electron velocity distribution function in gas under crossed electric and magnetic fields
SUGAWARA Hirotake
Plasma Science and Technology. 2019 21(9). p.094001
Effective Ionization Coefficients and Transport Parameters in Ultradilute $\hbox{SF}_{6} + \hbox{N}_{2}$ Mixtures
Dincer M. S., Ozerdem Ozgur Cemal, Bektas S.
IEEE Transactions on Plasma Science. 2007 35(5). p.1210
Thermal induced NDC of electron swarms in N2 and N2-like gases: the role of temperature and collision operator approximations
Casey M J E, Cocks D G, Boyle G J, Brunger M J, Dujko S, Urquijo J de, White R D
Plasma Sources Science and Technology. 2019 28(11). p.115005
RF discharge modeling considering time dependence and spatial nonlocality of the electron energy spectrum
Feoktistov V.A., Popov A.M., Popovicheva O.B., Rakhimov A.T., Rakhimova A.T., Volkova E.A.
IEEE Transactions on Plasma Science. 1991 19(2). p.163
A multi-term, multi-harmonic Boltzmann equation model for kinetic behavior in intense microwave and terahertz excited low temperature plasmas
Stephens Jacob Coty
Physics of Plasmas. 2018 25(10).
Swarm Studies and Inelastic Electron-Molecule Collisions (1987)
Phelps A. V.
Electron motion in counting gases — New answers and new questions
Schmidt B., Polenz S.
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 1988 273(2-3). p.488
Electron swarm properties in CCl2F2 and mixtures with N2 under steady-state conditions
Fréchette M. F.
Journal of Applied Physics. 1987 61(12). p.5254
The Ratio of Lateral Diffusion Coefficient to Mobility for Electrons in CO2 Laser Mixtures
Braglia G. L., Romanò L., Roznerski W.
Beiträge aus der Plasmaphysik. 1984 24(2). p.113
Comparative calculations of electron-swarm properties inN2at moderateENvalues
Pitchford L. C., Phelps A. V.
Physical Review A. 1982 25(1). p.540
Properties of electron swarms in gases in the upstream region of an electron source
Sugawara H, Sakai Y, Tagashira H
Journal of Physics D: Applied Physics. 1995 28(1). p.61
Nonequilibrium Effects in Ion and Electron Transport (1990)
Crompton R. W.
Boltzmann transport equation solver based on phase-point trajectory method for argon gas
Naeimabadi A., Abbasi H.
Physics of Plasmas. 2020 27(2).
Monte Carlo treatment of the transport of electrons in a gas including electron-electron interactions
Alkaa A., Ségur P., Zahraoui A., Kadri-H M.
Physical Review E. 1994 50(4). p.3006
Benchmark calculations for Monte Carlo simulations of electron transport
Raspopovic Z.M., Sakadzic S., Bzenic S.A., Petrovic Z.Lj.
IEEE Transactions on Plasma Science. 1999 27(5). p.1241
Optimization of Monte Carlo codes using null collision techniques for experimental simulation at low E/N
Brennan M.J.
IEEE Transactions on Plasma Science. 1991 19(2). p.256
Numerical modeling of the stationary electron distribution function in a weakly ionized gas in nonuniform electric fields
Shveigert V. A.
Journal of Applied Mechanics and Technical Physics. 1990 30(5). p.671
Boltzmann equation and Monte Carlo analysis of electron-electron interactions on electron distributions in nonthermal cold plasmas
Yousfi M., Himoudi A., Gaouar A.
Physical Review A. 1992 46(12). p.7889
Colloquium: Physically based fluid modeling of collisionally dominated low-temperature plasmas
Robson R. E., White R. D., Petrović Z. Lj.
Reviews of Modern Physics. 2005 77(4). p.1303
Electrical Breakdown and Discharges in Gases (1983)
Pitchford L. C.
Electron swarm development in SF6. II. Monte Carlo simulation
Satoh K, Itoh H, Nakao Y, Takjashira H
Journal of Physics D: Applied Physics. 1988 21(6). p.931
Electron drift velocity in CO2 laser mixtures
Braglia G. L., Romanò L., Roznerski W.
Il Nuovo Cimento D. 1983 2(3). p.898
Rate coefficients for electron impact excitation of the a3Π state of CO
Ristić M.M., Vojnović M., Poparić G.B., Belić D.S.
Chemical Physics. 2012 405 p.16
Monte Carlo modeling and optimization of buffer gas positron traps
Marjanović Srđan, Petrović Zoran Lj
Plasma Sources Science and Technology. 2017 26(2). p.024003
Comment on "Comparative calculations of electron-swarm properties inN2at moderateENvalues"
Braglia G. L., Romanò L., Diligenti M.
Physical Review A. 1982 26(6). p.3689
Enhanced reliability of drift-diffusion approximation for electrons in fluid models for nonthermal plasmas
Becker M. M., Loffhagen D.
AIP Advances. 2013 3(1).
Effect of a Model of the Electron Angular Scattering on the Electron Runaway Rate in Helium
Bochkov E. I., Babich L. P., Kutsyk I. M.
IEEE Transactions on Plasma Science. 2021 49(9). p.2637
Polarization of atomic ensembles in ionized gases
Kazantsev S.A., Polinovskaya N.Ya., Pyatnitskii L.N., Edel'man S.A.
Uspekhi Fizicheskih Nauk. 1988 156(9). p.3
Validity of Pseudo-Isotropic Analysis of Electron Transport Using the Momentum Transfer Cross Section
Ikuta Nobuaki, Gotoda Hiroaki, Yokoyama Ryuichi
Journal of the Physical Society of Japan. 1994 63(2). p.536
Elementary Theory of Transport Phenomena in Charged-Particle System under Electric Field
Ikuta Nobuaki, Murakami Yukio
Journal of the Physical Society of Japan. 1987 56(1). p.115
Electron runaway rate in air
Babich Leonid, Bochkov Evgeniĭ
Journal of Physics D: Applied Physics. 2021 54(46). p.465205
A Computational Scheme of Propagator Method for Moment Equations to Derive Real-Space Electron Transport Coefficients in Gas Under Crossed Electric and Magnetic Fields
Sugawara Hirotake
IEEE Transactions on Plasma Science. 2019 47(2). p.1071
Modeling of plasmas for dry etching in ULSI technologies
2000 22nd International Conference on Microelectronics. Proceedings (Cat. No.00TH8400) (1999)
Petrovic Z.L., Sakadzic S., Raspopovic Z.M., Makabe T.
First principles calculation of the effect of Coulomb collisions in partially ionized gases
Donkó Z.
Physics of Plasmas. 2014 21(4).
Rate coefficients for resonant vibrational excitation of N2
Ristić M., Poparić G.B., Belić D.S.
Chemical Physics. 2007 331(2-3). p.410
Resonant Vibrational Excitation and De-Excitation of CO(v) by Low Energy Electrons
Poparić G. B., Ristić M., Belić D. S.
The Journal of Physical Chemistry A. 2008 112(48). p.12296
Nonequilibrium Effects in Ion and Electron Transport (1990)
Ramos David, Patrick Edward, Abner Douglas, Andrews Merrill, Garscadden Alan
Deep learning for solving the Boltzmann equation of electrons in weakly ionized plasma
Kawaguchi S, Takahashi K, Ohkama H, Satoh K
Plasma Sources Science and Technology. 2020 29(2). p.025021
Monte carlo calculations of diffusion coefficients
Penetrante B. M., Bardsley J. N., Lin J. L.
Lettere al Nuovo Cimento. 1982 34(2). p.57
Diffusion tensor of electron or light ion swarm in electric fields in gases
Makabe T, Mori T
Journal of Physics D: Applied Physics. 1984 17(4). p.699
Relaxation of electron swarm energy distribution functions in time-varying fields
Bzenic S., Raspopovic Z.M., Sakadzic S., Petrovic Z.Lj.
IEEE Transactions on Plasma Science. 1999 27(1). p.78
Electron Energy Transfer Rate Coefficients of Carbon Dioxide
Poparić G. B., Ristić M. M., Belić D. S.
The Journal of Physical Chemistry A. 2010 114(4). p.1610
Spherical-harmonics decomposition of the Boltzmann equation for charged-particle swarms in the presence of both electric and magnetic fields
Ness K. F.
Physical Review E. 1993 47(1). p.327
Monte Carlo simulation of electron swarms at low reduced electric fields
Yousfi M., Hennad A., Alkaa A.
Physical Review E. 1994 49(4). p.3264
Motion of Electrons and Ions in a Weakly Ionized Gas in a Field. 1. Foundations of the Integral Theory
Braglia G. L.
Beiträge aus der Plasmaphysik. 1980 20(3). p.147
Kinetics of metastable states in high-pressure nitrogen plasma pumped by high-current electron beam
Klopovsky K S, Mukhovatova A V, Popov A M, Popov N A, Popovicheva O B, Rakhimova T V
Journal of Physics D: Applied Physics. 1994 27(7). p.1399
Electron–Molecule Interactions and their Applications (1984)
Hunter S.R., Christophorou L.G.
Impact of nonisotropic elastic and inelastic scattering on the electron velocity distribution in weakly ionized plasmas
Winkler R., Braglia G. L., Wilhelm J.
Il Nuovo Cimento D. 1988 10(10). p.1209
On a computer simulation of electron swarm motion which competes with analytical methods
Braglia G. L.
Lettere Al Nuovo Cimento Series 2. 1981 31(5). p.183
Effect of anisotropic scattering for rotational collisions on electron transport parameters in CO
Vialetto L, Ben Moussa A, van Dijk J, Longo S, Diomede P, Guerra V, Alves L L
Plasma Sources Science and Technology. 2021 30(7). p.075001
The influence of frequency on the efficiency of dissociation of freons by microwave discharges
25th European Microwave Conference, 1995 (1995)
Bzenic S A, Manola S S, Petrovic Z Lj
Boltzmann equation studies on electron swarm parameters in Townsend breakdown of copper vapor plasma using independently assessed electron-collision cross sections
Yang Wei, Meng Xiaohui, Zhou Qianhong, Dong Zhiwei
AIP Advances. 2019 9(3).
Measurements of swarm parameters and derived electron collision cross sections in methane
Davies D. K., Kline L. E., Bies W. E.
Journal of Applied Physics. 1989 65(9). p.3311
Solution of time-dependent Boltzmann equation for electrons in non-thermal plasma
Trunec D, Bonaventura Z, Nečas D
Journal of Physics D: Applied Physics. 2006 39(12). p.2544
Transport Property of Electrons in Gases under Electric Field 1. Lateral Diffusion Coefficient
Ikuta Nobuaki, Itoh Hidenori, Okano Nobuyuki, Yamamoto Kōji
Journal of the Physical Society of Japan. 1985 54(7). p.2485
Physics and Applications of Pseudosparks (1990)
Pitchford L. C.
Dependence of the Generation Rate of High-Energy Electrons in Helium on the Electron Angular Scattering Model
Bochkov E. I., Babich L. P., Kutsyk I. M.
Plasma Physics Reports. 2021 47(10). p.1027
The theory of electron scattering from polyatomic molecules
Gianturco F.A., Jain A.
Physics Reports. 1986 143(6). p.347
Comparative Calculation of Electron Transport Properties in Anisotropic Ramp Model Gas of Reid by Monte-Carlo Simulation
Yamamoto Kohji, Ikuta Nobuaki
Journal of the Physical Society of Japan. 1994 63(3). p.954
A multi-term Boltzmann equation analysis of electron swarms in gases-the time-of-flight parameters
Yachi S, Date H, Kitamori K, Tagashira H
Journal of Physics D: Applied Physics. 1991 24(4). p.573
Extended Boltzmann analysis of electron swarm experiments
Pitchford L. C., ONeil S. V., Rumble J. R.
Physical Review A. 1981 23(1). p.294
Role of electron-molecule angular scattering in shaping the electron-velocity distribution
Kunhardt E. E., Tzeng Y.
Physical Review A. 1986 34(3). p.2158
Electrical Breakdown and Discharges in Gases (1983)
Phelps A. V.
Transport coefficients and scattering cross-sections for plasma modelling in CF4-Ar mixtures: a swarm analysis
Kurihara Masaru, Petrovic Zoran Lj, Makabe Toshiaki
Journal of Physics D: Applied Physics. 2000 33(17). p.2146
Comparison of kinetic calculation techniques for the analysis of electron swarm transport at low to moderateE/Nvalues
Pinhão N R, Donkó Z, Loffhagen D, Pinheiro M J, Richley E A
Plasma Sources Science and Technology. 2004 13(4). p.719
Non-equilibrium transport of positron and electron swarms in gases and liquids
White R D, Dujko S, Robson R E, Petrović Z Lj, McEachran R P
Plasma Sources Science and Technology. 2010 19(3). p.034001
Flight Behaviour of Electrons in a Ramp Model Gas Calculated by the FTI Method
Fukutoku Mitsunori, Ikuta Nobuaki
Journal of the Physical Society of Japan. 1990 59(8). p.2727
A classical trajectory Monte Carlo model for the injection of electrons into gaseous argon
Kuntz P. J., Schmidt W. F.
The Journal of Chemical Physics. 1982 76(2). p.1136
Kinetic phenomena in electron transport in radio-frequency fields
Petrović Z.Lj., Raspopović Z.M., Dujko S., Makabe T.
Applied Surface Science. 2002 192(1-4). p.1
SCENA: A simulation tool for radiation-induced gas scintillation
Lamotte M., De Izarra G., Jammes C.
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 2020 982 p.164576
The proceedings of the 10th Frontier Academic Forum of Electrical Engineering (FAFEE2022) (2023)
Wu Bingyu, Zhong Linlin
A benchmark model for analysis of electron transport in non-conservative gases
Nolan A M, Brennan M J, Ness K F, Wedding A B
Journal of Physics D: Applied Physics. 1997 30(20). p.2865
On the existence of transiently negative diffusion coefficients for electrons in gases inE×Bfields
White R D, Dujko S, Ness K F, Robson R E, Raspopović Z, Petrović Z Lj
Journal of Physics D: Applied Physics. 2008 41(2). p.025206
Transverse electron swarm parameters by a Fourier-transformed Boltzmann equation analysis
Date H, Kondo K, Tagashira H
Journal of Physics D: Applied Physics. 1993 26(8). p.1211
Kinetic theory of drift-tube experiments with polyatomic species
Viehland L.A., Lin S.L., Mason E.A.
Chemical Physics. 1981 54(3). p.341
Resonant Vibrational Excitation and De-Excitation of N2(v) by Low-Energy Electrons
Poparić G. B., Ristić M., Belić D. S.
The Journal of Physical Chemistry A. 2008 112(17). p.3816
Electron relaxation properties of Ar magnetron plasmas
CAI Xinjing, WANG Xinxin, ZOU Xiaobing
Plasma Science and Technology. 2018 20(3). p.035405
Monte Carlo simulation of electron avalanches and avalanche size distributions in methane
Jovanović Aleksandar P., Stamenković Suzana N., Stankov Marjan N., Marković Vidosav Lj.
Contributions to Plasma Physics. 2019 59(3). p.272
Electron multiplication in the glow-discharge cathode fall
Paulick Thomas C.
Journal of Applied Physics. 1990 67(6). p.2774
Development of swarm transport theory in radio-frequency electric and crossed electric and magnetic fields
White R.D., Ness K.F., Robson R.E.
Applied Surface Science. 2002 192(1-4). p.26
Electron attachment to the perfluoroalkanes n-CNF2N+2 (N=1–6) using high pressure swarm techniques
Hunter S. R., Christophorou L. G.
The Journal of Chemical Physics. 1984 80(12). p.6150
A multi-term Boltzmann equation benchmark of electron-argon cross-sections for use in low temperature plasma models
Stephens J
Journal of Physics D: Applied Physics. 2018 51(12). p.125203
Abstract PDF (6.5 MB) Export Citation

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email