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Multi-discharge phenomenon in coplanar electrodes microplasma devicesMENG, L. G; LIN, Z. J; XING, J. P et al.The European physical journal. D, Atomic, molecular and optical physics (Print). 2010, Vol 60, Num 3, pp 575-579, issn 1434-6060, 5 p.Article

Hysteresis induced by gap length effects in capacitively coupled plasmas at low pressuresWEI JIANG; WANG, Hong-Yu; ZHAO, Shu-Xia et al.Journal of physics. D, Applied physics (Print). 2009, Vol 42, Num 10, issn 0022-3727, 102005.1-102005.5Article

Investigations of capacitively coupled neutral loop discharges (CCP-NLD) via PIC simulationVURAL, M; BRINKMANN, R. P.Journal of physics. D, Applied physics (Print). 2007, Vol 40, Num 2, pp 510-519, issn 0022-3727, 10 p.Article

Exact charge conservation scheme for Particle-in-Cell simulation with an arbitrary form-factorESIRKEPOV, T. Zh.Computer physics communications. 2001, Vol 135, Num 2, pp 144-153, issn 0010-4655Article

Kinetic simulations of a plasma thrusterTACCOGNA, F; SCHNEIDER, R; LONGO, S et al.Plasma sources science & technology (Print). 2008, Vol 17, Num 2, issn 0963-0252, 024003.1-024003.16Conference Paper

A PIC-MCC simulation of the high-voltage interruption ability of a vacuum interrupterTAKAHASHI, Shinji; ARAI, Kazuyoshi; MORIMIYA, Osami et al.IEEE transactions on plasma science. 2007, Vol 35, Num 4, pp 912-919, issn 0093-3813, 8 p., 2Article

Efficient particle simulation of a virtual cathode using a grid-free treecode Poisson solverCHRISTLIEB, Andrew J; KRASNY, Robert; VERBONCOEUR, John P et al.IEEE transactions on plasma science. 2004, Vol 32, Num 2, pp 384-389, issn 0093-3813, 6 p., 1Conference Paper

Simulation study of indirect positron generation by an ultra-short laserYONGHONG YAN; YUCHI WU; KEGONG DONG et al.The European physical journal. D, Atomic, molecular and optical physics (Print). 2014, Vol 68, Num 1, issn 1434-6060, 4.1-4.5Article

Measurements of ion energy distributions in a dual-frequency capacitively coupled plasma for Ar/O2 dischargesJIA LIU; ZHANG, Quan-Zhi; LIU, Yong-Xin et al.Journal of physics. D, Applied physics (Print). 2013, Vol 46, Num 23, issn 0022-3727, 235202.1-235202.8Article

Realistic Simulations of Fast-Ion Wall Distribution Including Effects Due to Finite Larmor RadiusSNICKER, Antti; KURKI-SUONIO, Taina; SIPILÄ, Seppo K et al.IEEE transactions on plasma science. 2010, Vol 38, Num 9, pp 2177-2184, issn 0093-3813, 8 p., 1Article

Pendulum Electrons in Micro Hollow Cathode DischargesGON JUN KIM; JAE KOO LEE.IEEE transactions on plasma science. 2008, Vol 36, Num 4, pp 1238-1239, issn 0093-3813, 2 p., 1Article

A particle-in-cell simulation of the high-field effect in devices with micrometer gapsRADMILOVIC-RADJENOVIC, Marija; RADJENOVIC, Branislav.IEEE transactions on plasma science. 2007, Vol 35, Num 5, pp 1223-1228, issn 0093-3813, 6 p., 1Article

Probe diagnostics and numerical simulations of a low pressure argon slender plasma excited by a low frequency dischargeNI, T. L; KE, B; ZHU, X. D et al.Plasma sources science & technology (Print). 2008, Vol 17, Num 4, issn 0963-0252, 045006.1-045006.8Article

Unstructured adaptive grid and grid-free methods for edge plasma fluid simulationsBATISHCHEV, O. V; BATISHCHEVA, A. A; KHOLODOV, A. S et al.Journal of plasma physics. 1999, Vol 61, pp 701-722, issn 0022-3778, 5Article

Electron energy distribution functions and second kind collisionsCAPITELLI, M; COLONNA, G; DE PASCALE, O et al.Plasma sources science & technology (Print). 2009, Vol 18, Num 1, issn 0963-0252, 014014.1-014014.11Article

The influence of ion-enhanced field emission on the high-frequency breakdown in microgapsRADMILOVIC -RADJENOVIC, Marija; RADJENOVIC, Branislav.Plasma sources science & technology (Print). 2007, Vol 16, Num 2, pp 337-340, issn 0963-0252, 4 p.Article

Self-consistent particle modeling of inductively coupled CF4discharges and radical flowTAKEKIDA, Hideto; NANBU, Kenichi.IEEE transactions on plasma science. 2006, Vol 34, Num 3, pp 973-983, issn 0093-3813, 11 p., 3Article

Plasma modelling for the PSI linear plasma deviceKASTELEWICZ, H; FUSSMANN, G.Contributions to plasma physics (1985). 2004, Vol 44, Num 4, pp 352-360, issn 0863-1042, 9 p.Article

The energy distribution function of ions impinging on nanoparticles in a collisional low-pressure plasmaGALLI, Federico; MAMUNURU, Meenakshi; KORTSHAGEN, Uwe R et al.Plasma sources science & technology (Print). 2012, Vol 21, Num 3, issn 0963-0252, 035002.1-035002.8Article

Particle-in-cell simulation of ion beam extraction from a pulsed plasma through a gridSANG KI NAM; ECONOMOU, Demetre J; DONNELLY, Vincent M et al.Plasma sources science & technology (Print). 2007, Vol 16, Num 1, pp 90-96, issn 0963-0252, 7 p.Article

Simulating plasma-induced hall thruster wall erosion with a two-dimensional hybrid modelSOMMIER, Emmanuelle; SCHARFE, Michelle K; GASCON, Nicolas et al.IEEE transactions on plasma science. 2007, Vol 35, Num 5, pp 1379-1387, issn 0093-3813, 9 p., 1Article

Three-dimensional deformable-grid electromagnetic particle-in-cell for parallel computersWANG, J; KONDRASHOV, D; LIEWER, P. C et al.Journal of plasma physics. 1999, Vol 61, pp 367-389, issn 0022-3778, 3Article

Magnetic field approaches in dc thermal plasma modellingFRETON, P; GONZALEZ, J. J; MASQUERE, M et al.Journal of physics. D, Applied physics (Print). 2011, Vol 44, Num 34, issn 0022-3727, 345202.1-345202.16Article

SPECIAL ISSUE ON NUMERICAL SIMULATION OF PLASMASALVES, Luis L; BIZARRO, JOAO P. S; FONSECA, Ricardo A et al.IEEE transactions on plasma science. 2010, Vol 38, Num 9, issn 0093-3813, 338 p., 1Serial Issue

Capacitively Coupled Plasma With Widely Spaced Confinement GridKENNEY, Jason A; RAUF, Shahid; COLLINS, Ken et al.IEEE transactions on plasma science. 2008, Vol 36, Num 4, pp 1364-1365, issn 0093-3813, 2 p., 1Article

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