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Ионизационные волны (страты) в разрядной плазме

Стратификация положительного столба разряда в газе обусловлена распространением своеобразных волн, называемых теперь ионизационными. Исследование искусственно вызванных ионизационных волн малой амплитуды при таком состоянии плазмы, когда волны спонтанно не возбуждаются, выявило их чрезвычайно разнообразные дисперсионные свойства; наблюдаются обратные волны, прямые волны, направленные к аноду и к катоду, и разные промежуточные типы, причем они часто обладают конвективной, а иногда и абсолютной неустойчивостью. Распространение ионизационных волн обусловлено своеобразной замкнутой цепью процессов, локальное возмущение однородности плазмы порождает пространственный заряд, и им вызванное электрическое поле меняет среднюю энергию электронов так, что на анодной стороне повышенной концентрации ионов ионизация падает. Процесс повторяется с чередующимся знаком и ведет к распространению своеобразной волны, описываемой уравнением только с первой производной по времени. В статье описаны экспериментально найденные свойства ионизационных волн и дано их физическое объяснение.
Таблиц 9, иллюстраций 24, библиографических ссылок 189.

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English fulltext is available at DOI: 10.1070/PU1968v011n02ABEH003809
PACS: 52.80.−s, 52.35.−g (все)
DOI: 10.3367/UFNr.0094.196803d.0463
URL: https://ufn.ru/ru/articles/1968/3/d/
Цитата: Пекарек Л "Ионизационные волны (страты) в разрядной плазме" УФН 94 463–500 (1968)
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English citation: Pekarek L “Ionization waves (striations) in a discharge plasmaSov. Phys. Usp. 11 188–208 (1968); DOI: 10.1070/PU1968v011n02ABEH003809

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  1. Dong H, Liu R et al Physics of Plasmas 33 (6) (2026)
  2. Savkin K P, Beloplotov D V et al Vacuum 253 115613 (2026)
  3. Alwahaibi A K, Won S H, Farouk T I Journal of Applied Physics 139 (6) (2026)
  4. Vysikaylo P I J. Phys.: Conf. Ser. 3027 (1) 012017 (2025)
  5. Alsaeed O, Yee B T et al Journal of Vacuum Science & Technology A 43 (6) (2025)
  6. Boeuf J P Physics of Plasmas 32 (11) (2025)
  7. Vysikaylo P I IEEE Trans. Plasma Sci. 52 (1) 30 (2024)
  8. Vysikaylo P I IEEE Trans. Plasma Sci. 52 (6) 1983 (2024)
  9. Boeuf J P, Boufendi L et al Physics of Plasmas 31 (7) (2024)
  10. White Z K, Gott R P et al AIP Advances 13 (8) (2023)
  11. Jovanović A P, Hoder Tomáš et al Plasma Sources Sci. Technol. 32 (5) 055011 (2023)
  12. Kurbatov P F High Temp 61 (2) 152 (2023) [Курбатов П Ф Теплофизика высоких температур 61 (2) 170 (2023)]
  13. ZHU Hailong, HUANG Qixiang et al Plasma Sci. Technol. 24 (5) 055406 (2022)
  14. Boeuf J P Physics of Plasmas 29 (2) (2022)
  15. Kolobov V I, Arslanbekov R R Phys. Rev. E 106 (6) (2022)
  16. Kodanova S, Abdirakhmanov A et al Contributions to Plasma Physics 62 (10) (2022)
  17. Tahiyat M M, Stephens Ja C et al J. Phys. D: Appl. Phys. 55 (8) 085201 (2022)
  18. Kolobov V I, Golubovskii Yu B Plasma Sources Sci. Technol. 31 (9) 094003 (2022)
  19. Klimov A S, Bakeev I Yu et al IEEE Trans. Plasma Sci. 49 (9) 2544 (2021)
  20. Golubovskii Yu, Gurkova T, Valin S Plasma Sources Sci. Technol. 30 (11) 115001 (2021)
  21. Bathish B, Hyams I et al 2021 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC), (2021) p. 1
  22. Haddou F N, Guillot P et al Optik 241 166339 (2021)
  23. Yamada H, Kato S et al Physics of Plasmas 27 (2) (2020)
  24. Demidov V I, Koepke M E et al Physics of Plasmas 27 (2) (2020)
  25. Zhu H, Yao W, Li Zh Plasma Processes & Polymers 17 (9) (2020)
  26. ALEX Prince, SINHA Suraj Kumar Plasma Sci. Technol. 22 (8) 085402 (2020)
  27. Dzlieva E S, D’yachkov L G et al Plasma Sources Sci. Technol. 29 (8) 085020 (2020)
  28. Lapushkina T A J. Phys.: Conf. Ser. 1697 (1) 012219 (2020)
  29. Kurbatov P F Physics of Fluids 31 (2) (2019)
  30. Kurbatov P F Physics of Fluids 31 (11) (2019)
  31. Radisch M, Kopp F et al IEEE Trans. Plasma Sci. 47 (1) 199 (2019)
  32. (PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON ADVANCES AND APPLICATIONS IN PLASMA PHYSICS (AAPP 2019)) Vol. PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON ADVANCES AND APPLICATIONS IN PLASMA PHYSICS (AAPP 2019)Constriction and stratification of the positive column of a glow discharge in inert gasesYuriGolubovskiiAlekseiSiaskoSergeiValin2179 (2019) p. 020024
  33. Pacheco Y Q, Barragán Y F et al J. Phys.: Conf. Ser. 1386 (1) 012122 (2019)
  34. Lapushkina T A, Erofeev A V et al Aerospace Science and Technology 85 347 (2019)
  35. Kawamura E, Lieberman M A, Lichtenberg A J Physics of Plasmas 25 (1) (2018)
  36. Zhu H, Su Z, Dong Y Applied Physics Letters 111 (5) (2017)
  37. Gudmundsson J T, Hecimovic A Plasma Sources Sci. Technol. 26 (12) 123001 (2017)
  38. Kawamura E, Lieberman M A, Lichtenberg A J J. Phys. D: Appl. Phys. 50 (14) 145204 (2017)
  39. Mahamud R, Farouk T, Kolobov V 2017 IEEE International Conference on Plasma Science (ICOPS), (2017) p. 1
  40. Sornsakdanuphap J, Suanpoot P et al Journal of the Korean Physical Society 70 (11) 979 (2017)
  41. Encyclopedia of Plasma Technology 0 (2016) p. 529
  42. Golubovskii Yu, Valin S et al Physics of Plasmas 23 (12) (2016)
  43. Kawamura E, Lieberman M A, Lichtenberg A J Plasma Sources Sci. Technol. 25 (5) 054009 (2016)
  44. Nedospasov A V Успехи физических наук 185 (6) 613 (2015) [Nedospasov A V Phys.-Usp. 58 (6) 574 (2015)]
  45. Maimistov A I, Lyashko E I Opt. Spectrosc. 118 (5) 803 (2015)
  46. Golubovskii Yu, Pelyukhova E et al Physics of Plasmas 22 (3) (2015)
  47. Kurbatov P F Physics of Plasmas 21 (2) 023508 (2014)
  48. Miller P M, Koepke M E, Gunell H Plasma Phys. Control. Fusion 56 (1) 015003 (2014)
  49. Belonogov A N, Dubinov A E et al Tech. Phys. 59 (7) 975 (2014)
  50. Golubovskii Yu B, Nekuchaev V O, Skoblo A Yu Tech. Phys. 59 (12) 1787 (2014)
  51. Pollard W, Suzuki P, Staack D IEEE Trans. Plasma Sci. 42 (10) 2650 (2014)
  52. Robson R E, White R D, Hildebrandt M Eur. Phys. J. D 68 (7) (2014)
  53. Purwins H-G, Stollenwerk L Plasma Phys. Control. Fusion 56 (12) 123001 (2014)
  54. Becker M M, Hoder T et al J. Phys. D: Appl. Phys. 46 (35) 355203 (2013)
  55. Nedospasov A V EPL 103 (2) 25001 (2013)
  56. Belonogov A N, Dubinov A E et al IEEE Trans. Plasma Sci. 41 (1) 36 (2013)
  57. Vysikaylo P I Surf. Engin. Appl.Electrochem. 49 (3) 222 (2013)
  58. Dubinov A E, Maksimov A N et al IEEE Trans. Plasma Sci. 41 (3) 447 (2013)
  59. Kumar R Physics Letters A 376 (30-31) 2126 (2012)
  60. Tolias P New J. Phys. 14 (1) 013002 (2012)
  61. Lisovskiy V A, Koval V A et al Eur. J. Phys. 33 (6) 1537 (2012)
  62. Nicoletopoulos P, Robson R E, White R D Phys. Rev. E 85 (4) (2012)
  63. Ionikh Y Z, Dyatko N A et al Plasma Sources Sci. Technol. 21 (5) 055008 (2012)
  64. Kurbatov P F AIP Advances 1 (2) (2011)
  65. Fundamentals of Ionized Gases 1 (2011) p. 283
  66. Golubovskii Yu B, Nekuchaev V et al Plasma Sources Sci. Technol. 20 (5) 053002 (2011)
  67. Hoder Tomáš, Loffhagen D et al Phys. Rev. E 84 (4) (2011)
  68. Dubinov A E, Esin M I, Maksimov A N IEEE Trans. Plasma Sci. 39 (11) 2518 (2011)
  69. Tsendin L D Uspekhi Fizicheskikh Nauk 180 (2) 139 (2010)
  70. Khomenko S I, Khorunzhiy M O et al 2010 INTERNATIONAL KHARKOV SYMPOSIUM ON PHYSICS AND ENGINEERING OF MICROWAVES, MILLIMETER AND SUBMILLIMETER WAVES, (2010) p. 1
  71. Landa P S, Trubetskov D I, Gusev V A Uspekhi Fizicheskikh Nauk 179 (3) 255 (2009) [Landa P S, Trubetskov D I, Gusev V A Phys.-Usp. 52 (3) 235 (2009)]
  72. Golubovskii Yu B, Skoblo A Yu et al Plasma Sources Sci. Technol. 18 (4) 045022 (2009)
  73. Smirnov B M Uspekhi Fizicheskikh Nauk 179 (6) 591 (2009) [Smirnov B M Phys.-Usp. 52 (6) 559 (2009)]
  74. Liu Ya, Zissis G et al J. Phys. D: Appl. Phys. 42 (9) 095207 (2009)
  75. Nedospasov A V Phys. Rev. E 79 (3) (2009)
  76. Tsendin L D Plasma Sources Sci. Technol. 18 (1) 014020 (2009)
  77. Shkurenkov I A, Mankelevich Yu A, Rakhimova T V Phys. Rev. E 79 (4) (2009)
  78. Liu Ya, Chen D et al J. Phys. D: Appl. Phys. 41 (13) 135211 (2008)
  79. Golubovskii Yu B, Kozakov R V et al J. Phys. D: Appl. Phys. 41 (10) 105205 (2008)
  80. Alexandroaei D IEEE Trans. Plasma Sci. 36 (4) 1010 (2008)
  81. Golubovskii Yu B, Nekuchaev V O, Skoblo A Yu Tech. Phys. Lett. 34 (10) 901 (2008)
  82. Liu Ya, Bhosle S et al 2008 IEEE Industry Applications Society Annual Meeting, (2008) p. 1
  83. Dubinov A E, Sazonkin M A Tech. Phys. Lett. 33 (3) 270 (2007)
  84. Kumar R, Kulkarni S V, Bora D Physics of Plasmas 14 (12) (2007)
  85. Golubovskii Yu B, Skoblo A Yu Tech. Phys. Lett. 33 (8) 711 (2007)
  86. Novopashin S A, Polyakov A A et al Tech. Phys. Lett. 33 (3) 196 (2007)
  87. Kolobov V I J. Phys. D: Appl. Phys. 39 (24) R487 (2006)
  88. Garscadden A Springer Handbook of Atomic, Molecular, and Optical Physics Springer Handbooks Chapter 87 (2006) p. 1319
  89. Hoshi Y, Yokota A et al Journal of Applied Physics 100 (1) (2006)
  90. Siefert N S, Sands B L, Ganguly B N Applied Physics Letters 89 (1) (2006)
  91. Bruhn B, Koch B ‐P, Wilke C Contrib. Plasma Phys. 45 (5-6) 328 (2005)
  92. Golubovskii Yu B, Skoblo A Yu et al Phys. Rev. E 72 (2) (2005)
  93. Arslanbekov R R, Kolobov V I IEEE Trans. Plasma Sci. 33 (2) 354 (2005)
  94. Voronov A Ya J. Exp. Theor. Phys. 101 (1) 145 (2005)
  95. Nerushev O A, Novopashin S A et al Tech. Phys. Lett. 30 (2) 106 (2004)
  96. Fedoseev A V, Sukhinin G I Plasma Phys. Rep. 30 (12) 1061 (2004)
  97. Kachorovskii V Yu, Lyubinskiy I S, Tsendin L D Phys. Rev. B 68 (3) (2003)
  98. Churilov G N, Weisman R B et al Fullerenes, Nanotubes and Carbon Nanostructures 11 (4) 371 (2003)
  99. Nerushev O A, Novopashin S A et al Plasma Phys. Rep. 29 (9) 796 (2003)
  100. Golubovskii Yu B, Kozakov R V et al Phys. Rev. E 68 (2) (2003)
  101. Tsendin L D NATO Science Series: B Vol. Electron Kinetics and Applications of Glow DischargesPrinciples of the Electron Kinetics in Glow Discharges367 Chapter 1 (2002) p. 1
  102. Churilov G N, Lopatin V A et al Instruments and Experimental Techniques 44 (4) 519 (2001)
  103. Koepke M E, Dinklage A et al Physics of Plasmas 8 (4) 1432 (2001)
  104. Grabec I, Mandelj S Physics Letters A 287 (1-2) 105 (2001)
  105. Golubovskii Yu B, Kozakov R V et al Czech. J. Phys. 50 (S3) (2000)
  106. Nerushev O A, Novopashin S A et al Plasma Phys. Rep. 26 (1) 78 (2000)
  107. Sigeneger F, Sukhinin G I, Winkler R Plasma Chemistry and Plasma Processing 20 (1) 87 (2000)
  108. Weltmann K -D, Koepke M E, Selcher C A Phys. Rev. E 62 (2) 2773 (2000)
  109. Dinklage A, Wilke C Physics Letters A 277 (6) 331 (2000)
  110. Golubovskii Yu B, Kozakov R V et al Phys. Rev. E 62 (2) 2707 (2000)
  111. Dinklage A, Wilke C et al Phys. Rev. E 62 (5) 7219 (2000)
  112. Jonas P, Bruhn B et al Physics of Plasmas 7 (2) 729 (2000)
  113. Golubovskii Yu B, Maiorov V A et al J. Phys. D: Appl. Phys. 32 (12) 1391 (1999)
  114. Sakawa Y, Hori M et al Phys. Rev. E 60 (5) 6007 (1999)
  115. Spatschek K H Plasma Phys. Control. Fusion 41 (3A) A115 (1999)
  116. Nerushev O A, Novopashin S A et al Phys. Rev. E 58 (4) 4897 (1998)
  117. Koch B -P, Goepp N, Bruhn B Phys. Rev. E 56 (2) 2118 (1997)
  118. Golubovskii Yu B, Nekuchaev V O et al Russ Phys J 40 (1) 97 (1997)
  119. Golubovskii Yu B, Nekuchaev V O et al Tech. Phys. 42 (9) 997 (1997)
  120. Nerushev O A, Novopashin S A et al Jetp Lett. 66 (11) 711 (1997)
  121. Sakawa Y, Hori M et al Physics of Plasmas 4 (5) 1179 (1997)
  122. Ganguly B N, Bletzinger P, Garscadden A Physics Letters A 230 (3-4) 218 (1997)
  123. Toader E I J. Phys. D: Appl. Phys. 28 (1) 75 (1995)
  124. Rohlena K, Skullerud H R Phys. Rev. E 51 (6) 6028 (1995)
  125. Bystrov S A, Lushchikova A M et al J. Phys. D: Appl. Phys. 27 (2) 273 (1994)
  126. Turcicova H J. Phys. D: Appl. Phys. 27 (1) 106 (1994)
  127. Ma J-X, Yu M Y Phys. Rev. E 50 (4) R2431 (1994)
  128. Sazhin S, Wild P et al J. Phys. D: Appl. Phys. 26 (11) 1872 (1993)
  129. Ohe K, Takeshima S, Kimura T Physics of Fluids B: Plasma Physics 5 (7) 2331 (1993)
  130. Christov N N, Pushkarov Kh I Europhys. Lett. 21 (4) 457 (1993)
  131. Ohe K, Hayashi Sh, Kimura T J. Phys. Soc. Jpn. 62 (10) 3476 (1993)
  132. Willebrand H, Matthiessen K et al Contrib. Plasma Phys. 32 (2) 57 (1992)
  133. Papanyan V O, Grigoryan Yu I Physics Letters A 164 (1) 43 (1992)
  134. Raizer Yu P, Allen J E Gas Discharge Physics Chapter 9 (1991) p. 214
  135. Federici J F, Valeo E J Phys. Rev. A 44 (8) 5158 (1991)
  136. Ohe K, Naito A et al Physics of Fluids B: Plasma Physics 3 (12) 3302 (1991)
  137. Popa G, Ohe K, Dumitrascu N J. Phys. D: Appl. Phys. 22 (9) 1327 (1989)
  138. Ohe K, Tsunoda X Contrib. Plasma Phys. 28 (6) 527 (1988)
  139. Balloni A J, Aihara S, Sakanaka P H Plasma Phys. Control. Fusion 30 (12) 1659 (1988)
  140. Harvey E C, Tobin R C Journal of Applied Physics 64 (6) 2861 (1988)
  141. Shivarova A, Tatarova E, Angelova V J. Phys. D: Appl. Phys. 21 (11) 1605 (1988)
  142. Ohe K, Tsunoda K Contrib Plasma Phys 27 (3) 171 (1987)
  143. Astratov V N, Il’inskii A V Ferroelectrics 75 (1) 251 (1987)
  144. Johnson III J A, Ramaiah R Phys. Rev. A 36 (2) 774 (1987)
  145. Tochigi K, Maeda Sh, Hirose Ch Phys. Rev. Lett. 57 (6) 711 (1986)
  146. Kerner B S, Osipov V V Springer Series in Synergetics Vol. Selforganization by Nonlinear Irreversible ProcessesAutosolitons in Active Systems with Diffusion33 Chapter 15 (1986) p. 118
  147. Golubovski Ju B, Nekuchajev V O Contrib Plasma Phys 25 (3) 295 (1985)
  148. Johnson J A, Ramaiah R Appl. Phys. B 35 (4) 237 (1984)
  149. Amemiya H J. Phys. D: Appl. Phys. 17 (12) 2387 (1984)
  150. Amemiya H Plasma Phys. 25 (7) 735 (1983)
  151. Ohe K Applied Physics Letters 41 (4) 338 (1982)
  152. Wasserstrom E, Crispin Y Journal of Applied Physics 53 (8) 5565 (1982)
  153. Neiger M, Popp H -P, Schmidt E Appl. Phys. B 28 (4) 373 (1982)
  154. Glab W, Nayfeh M H Applied Physics Letters 40 (7) 574 (1982)
  155. Thieltgen A, Leclert G, Cussenot J R The Physics of Fluids 24 (12) 2235 (1981)
  156. Pekárek L, Krejčí V Physics Letters A 81 (4) 228 (1981)
  157. Urbánková H, Chvojka M, Skála J Czech J Phys 31 (10) 1070 (1981)
  158. Ohe K J. Phys. Soc. Jpn. 50 (9) 3131 (1981)
  159. Urbánková H, Rohlena K Czech J Phys 30 (11) 1227 (1980)
  160. Thieltgen A, Cussenot J R, Leclert G J. Phys. D: Appl. Phys. 13 (2) 241 (1980)
  161. Ohe K, Asano K, Takeda S J. Phys. Soc. Jpn. 49 (1) 350 (1980)
  162. Krása J, Peřina V Physics Letters A 72 (4-5) 343 (1979)
  163. Krasa J, Perina V, Rothhard L J. Phys. D: Appl. Phys. 12 (5) 723 (1979)
  164. Dyatlov M K, Kas’yan V G, Levin V G J Appl Spectrosc 30 (6) 719 (1979)
  165. Landa P S, Ponomarev Yu V Radiophys Quantum Electron 22 (10) 877 (1979)
  166. Ausschnitt C P, Bjorklund G C Opt. Lett. 4 (1) 4 (1979)
  167. Landa P S, Ponomarev Yu V, Sadovskii V N Radiophys Quantum Electron 21 (11) 1174 (1978)
  168. Cicconi G, Rosatelli C, Molinari V J. Plasma Phys. 20 (1) 107 (1978)
  169. Rothhardt L, Krása J et al Czech J Phys 27 (10) 1121 (1977)
  170. Chvojka M, Pekárek L, Urbánková H Physics Letters A 58 (5) 305 (1976)
  171. Allis W P Physica B+C 82 (1) 43 (1976)
  172. Polman J Physica B+C 82 (1) 125 (1976)
  173. Peřina V Czech J Phys 26 (7) 764 (1976)
  174. Ose E, Rothhardt L Contrib Plasma Phys 16 (4) 263 (1976)
  175. Peřina V, Rohlena K, Růžička T Czech J Phys 25 (6) 660 (1975)
  176. Plasma Electrodynamics (1975) p. 393
  177. Non-Linear Theory and Fluctuations (1975) p. 283
  178. Ose E, Rothhardt L Contrib Plasma Phys 15 (6) 291 (1975)
  179. DAVIS C C, KING T A Advances in Quantum Electronics (1975) p. 169
  180. Takeda S, Ohe K Electrical Engineering Japan 94 (5) 111 (1974)
  181. Nighan W L, Wiegand W J Phys. Rev. A 10 (3) 922 (1974)
  182. Gower M C, Carswell A I Journal of Applied Physics 45 (9) 3922 (1974)
  183. Freeman R H, Roberts J A Plasma Phys. 16 (4) 377 (1974)
  184. Klein L A, Cheo B R-Sh, Stern R A Journal of Applied Physics 45 (12) 5218 (1974)
  185. Wallard A J, Woods P T J. Phys. E: Sci. Instrum. 7 (3) 209 (1974)
  186. Grabec I The Physics of Fluids 17 (10) 1834 (1974)
  187. Ohe K, Takeda S Contrib Plasma Phys 14 (2) 55 (1974)
  188. Rayment S W J. Phys. D: Appl. Phys. 7 (6) 871 (1974)
  189. Krása J, Pekárek L Czech J Phys 23 (8) 863 (1973)
  190. Sato M Contrib Plasma Phys 13 (1) 9 (1973)
  191. Rohlena K Czech J Phys 23 (7) 728 (1973)
  192. Franck G, Schipp F Technisch-wissenschaftliche Abhandlungen der Osram-Gesellschaft Vol. Technisch-wissenschaftliche Abhandlungen der Osram-GesellschaftAnodische Entladungserscheinungen und Rauschverhalten von Leuchtstofflampen11 Chapter 8 (1973) p. 86
  193. Haas R A Phys. Rev. A 8 (2) 1017 (1973)
  194. Krejčí V, Popa G Czech J Phys 23 (2) 161 (1973)
  195. Grabec I, Poberaj S Contrib Plasma Phys 12 (1) 9 (1972)
  196. McCorkle R A, Bennett W H J. Phys. A: Gen. Phys. 5 (4) 524 (1972)
  197. Grabec I Contrib Plasma Phys 12 (2) 83 (1972)
  198. Lee D A, Garscadden A The Physics of Fluids 15 (10) 1826 (1972)
  199. Rohlena K, Růžička T, Pekárek L Czech J Phys 22 (10) 920 (1972)
  200. Wellenstein H F, Robertson W W Journal of Applied Physics 43 (11) 4823 (1972)
  201. Bezhuk B A J Appl Spectrosc 17 (5) 1473 (1972)
  202. Krejčí V Czech J Phys 21 (8) 828 (1971)
  203. Sato M Contrib Plasma Phys 11 (6) 445 (1971)
  204. Jensen R C, Collins G J, Bennett W R Applied Physics Letters 18 (2) 50 (1971)
  205. Chuang Sh-Sh, Gamo H Applied Physics Letters 19 (5) 150 (1971)
  206. Drouet M G, Novak J P Physics Letters A 34 (3) 199 (1971)
  207. Grabec I Contrib Plasma Phys 11 (4) 285 (1971)
  208. Swain D W, Brown S C The Physics of Fluids 14 (7) 1383 (1971)
  209. Sato M Phys. Rev. Lett. 24 (18) 998 (1970)
  210. Pekárek L, Mašek K, Rohlena K Czech J Phys 20 (8) 879 (1970)
  211. šícha M, Řezáčová V Czech J Phys 20 (3) 356 (1970)
  212. Jackson A T, Coulter J R M J. Phys. A: Gen. Phys. 3 (5) 559 (1970)
  213. Grabec I, Poberaj S Plasma Phys. 11 (6) 519 (1969)
  214. Drouet M G Physics Letters A 29 (9) 558 (1969)
  215. Ovchinnikov L V, Privalov V E, Fridrikhov S A J Appl Spectrosc 11 (1) 723 (1969)
  216. Garscadden A, Bletzinger P, Simonen T C The Physics of Fluids 12 (9) 1833 (1969)
  217. Drouet M G, Cloutier G G J. Phys. E: Sci. Instrum. 1 (10) 1035 (1968)

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