Автореферат (1149788), страница 4
Текст из файла (страница 4)
– Т. 18. – №. 1-2 – C.83-90.9. Liang Y., Yuan C., Gao R., Jia J., Kirsanov G. V., Bekasov V. S., Marin, A. A., KudryavtsevA. A., Eliseev S. I., Zhou Z., Investigation of Low-Pressure Glow Discharge in a CoaxialGridded Hollow Cathode //IEEE Transactions on Plasma Science. – 2016.
– Т. 44. – №. 12.– С. 2965-2972.10. Eliseev S. I., Kudryavtsev A. A., Comment on “A large volume uniform plasma generatorfor the experiments of electromagnetic wave propagation in plasma”[Phys. Plasmas 20,012101 (2013)] //Physics of Plasmas. – 2016. – Т. 23. – №. 9. – С. 094701.11. Eliseev S. I., Kudryavtsev A. A., Liu H., Ning Z., Yu D., Chirtsov A. S., Transition fromglow microdischarge to arc discharge with thermionic cathode in argon at atmosphericpressure //IEEE Transactions on Plasma Science. – 2016.
– Т. 44. – №. 11. – С. 2536-2544.1412. Yuan C., Bogdanov E. A., Eliseev S. I., Kudryavtsev A. A., 1D kinetic simulations of a shortglow discharge in helium //Physics of Plasmas. – 2017. – Т. 24. – №. 7. – С. 073507(1-16).13. Eliseev S. I., Bogdanov E. A., Kudryavtsev A. A., Slow electron energy balance for hybridmodels of direct-current glow discharges //Physics of Plasmas. – 2017. – Т.
24. – №. 9. – С.093503(1-9).14. Yuan C., Yao J., Eliseev S. I., Bogdanov E. A., Kudryavtsev A. A., Zhou Z., On selfsustainment of DC discharges with gridded anode //Journal of Applied Physics. – 2017. – Т.122. – №. 14. – С. 143304(1-5).15. Yuan C., Tian R., Eliseev S. I., Demidov V. I., Kudryavtsev A. A., Zhou Z., Local MagneticControl in a Large-Scale Low-Pressure Nonlocal Plasma Source // IEEE Transactions onPlasma Science. – 2017.
– Т. 45. – №. 12. – С. 3114-3117.16. Yuan C., Tian R., Eliseev S. I., Bekasov V. S., Kudryavtsev A. A., Zhou Z., Efficientbroadband electromagnetic absorber based on direct-current discharge with griddedanode//Journal of Applied Physics, to be published in 2018.Список литературы[1] Rafatov I., Bogdanov E. A., Kudryavtsev A. A., On the accuracy and reliability of differentfluid models of the direct current glow discharge //Physics of Plasmas. – 2012.
– Т. 19. – №. 3. –С. 033502 – (1-12).[2] Ward A. L., Effect of space charge in cold-cathode gas discharges //Physical Review. – 1958.– Т. 112. – №. 6. – С. 1852-1857.[3] Graves D. B., Jensen K. F., A continuum model of DC and RF discharges //IEEE Transactionson plasma science. – 1986.
– Т. 14. – №. 2. – С. 78-91.[4] Liu H., Li M., Ning Z., Ren J., Tang H., Yu D., Demidov V. E., Eliseev S. I., Kudryavtsev A.A., 2-D modeling of orificed hollow cathodes of stationary plasma thrusters SPT-100 //IEEETransactions on Plasma Science. – 2015. – Т. 43. – №. 12. – С. 4024-4033.[5] Li M., Liu H., Ning Z., Ren J., Tang H., Yu D., Demidov V. E., Eliseev S. I., Kudryavtsev A.A, 2-D extended fluid model of applied-field magnetoplasmadynamic thruster with solid andhollow cathodes //IEEE Transactions on Plasma Science. – 2015. – Т.
43. – №. 12. – С. 40344042.[6] Liang Y., Yuan C., Gao R., Jia J., Kirsanov G. V., Bekasov V. S., Marin A. A., KudryavtsevA. A., Eliseev S. I., Zhou Z. X., Investigation of Low-Pressure Glow Discharge in a CoaxialGridded Hollow Cathode //IEEE Transactions on Plasma Science. – 2016.
– Т. 44. – №. 12. – С.2965-2972.[7] Jia J., Yuan C., Kudryavtsev A. A., Eliseev S. I., Kirsanov G. V., Bekasov V. S., Gao R., ZhouZ. X., Numerical and Experimental Diagnostics of Dusty Plasma in a Coaxial Gridded HollowCathode Discharge //IEEE Transactions on Plasma Science.
– 2016. – Т. 44. – №. 12. – С. 29732978.[8] Li C., Teunissen J., Nool M., Hundsdorfer W., Ebert U., A comparison of 3D particle, fluidand hybrid simulations for negative streamers //Plasma Sources Science and Technology. – 2012.– Т. 21. – №. 5. – С. 055019 – (1-14).[9] Kutasi K., Hartmann P., Donkó Z.
Self-consistent modelling of helium discharges:investigation of the role of He2+ ions //Journal of Physics D: Applied Physics. – 2001. – Т. 34. –№. 23. – С. 3368-3377.[10] Donkó Z., Hartmann P., Kutasi K. On the reliability of low-pressure dc glow dischargemodelling //Plasma Sources Science and Technology. – 2006. – Т. 15. – №. 2. – С. 178-186.15[11] Bánó G., Hartmann P., Kutasi K., Horváth P., Plašil R., Hlavenka P., Glosik J, Donko Z.,Combined Langmuir probe, electrical and hybrid modelling characterization of helium glowdischarges //Plasma Sources Science and Technology.
– 2007. – Т. 16. – №. 3. – С. 492-500.[12] Derzsi A., Hartmann P., Korolov I., Karacsony J., Bánó G., Donkó Z., On the accuracy andlimitations of fluid models of the cathode region of dc glow discharges //Journal of Physics D:Applied Physics. – 2009. – Т. 42. – №. 22. – С. 225204 – (1-12).[13] Birdsall C. K., Particle-in-cell charged-particle simulations, plus Monte Carlo collisions withneutral atoms, PIC-MCC //IEEE Transactions on Plasma Science. – 1991. – Т. 19. – №. 2.
– С.65-85.[14] Surendra M., Graves D. B., Jellum G. M., Self-consistent model of a direct-current glowdischarge: Treatment of fast electrons //Physical Review A. – 1990. – Т. 41. – №. 2. – С. 11121125.[15] Boeuf J. P., Pitchford L. C., Pseudospark discharges via computer simulation //IEEETransactions on Plasma Science. – 1991. – Т. 19. – №. 2. – С. 286-296.[16] Rafatov I., Bogdanov E. A., Kudryavtsev A. A., Account of nonlocal ionization by fastelectrons in the fluid models of a direct current glow discharge //Physics of Plasmas. – 2012.
– Т.19. – №. 9. – С. 093503 – (1-8).[17] Кудрявцев А. А., Морин А. В., Цендин Л. Д., Роль нелокальной ионизации вформировании коротких тлеющих разрядов //Журнал технической физики. – 2008. – Т. 78.– №. 8. – С. 71-82.[18] Бохан П. А., Сорокин А. Р., Открытый разряд, генерирующий электронный пучок:механизм, свойства и использование для накачки лазеров среднего давления //ЖТФ. –1985. – Т. 55. – №. 1.
– С. 88-96.[19] Bokhan P. A., Sorokin A. R., Gas laser excitation by an electron beam formed at opendischarge //Optical and quantum electronics. – 1991. – Т. 23. – №. 4. – С. S523-S538.[20] Min Y., Xiaoping L., Kai X., Yanming L., Donglin L., A large volume uniform plasmagenerator for the experiments of electromagnetic wave propagation in plasma //Physics ofPlasmas. – 2013. – Т. 20. – №. 1.
– С. 012101 – (1-6).[21] Kai X., Xiaoping L., Donglin L., Mingxu S., Hanlu Z., Reproducing continuous radioblackout using glow discharge plasma //Review of Scientific Instruments. – 2013. – Т. 84. – №.10. – С. 104701 – (1-6).[22] Bokhan P. A., Gugin P. P., Lavrukhin M. A., Zakrevsky D. E., Generation of high-voltagepulses with subnanosecond front rise times in open discharge //Physics of Plasmas.
– 2013. – Т.20. – №. 3. – С. 033507 – (1-6).[23] Bokhan P. A., Zakrevsky D. E., Electron-beam generation in a wide-aperture open gasdischarge: A comparative study for different inert gases //Applied Physics Letters. – 2010. – Т.97. – №. 9. – С. 091502 – (1-4).[24] Bokhan P. A., Zakrevsky D. E., Self-sustained photoelectron discharge //Applied physicsletters. – 2002.
– Т. 81. – №. 14. – С. 2526-2528.[25] Belskaya E. V., Bokhan P. A., Zakrevsky D. E., Highly efficient electron beam generationin a wide-aperture discharge in helium //Applied Physics Letters. – 2008. – Т. 93. – №. 9. – С.091503 – (1-3).[26] Сорокин А. Р., Является ли открытый разряд фотоэлектронным?—2 //Письма в ЖТФ.– 2002.
– Т. 28. – №. 9. – С. 14-21.16.