Hall effects and diamagnetic cavity collapse during a laser plasma cloud expands into a vacuum magnetic field

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This paper describes the results of a laboratory experiment on the sub-Alfven expansion of a quasi-spherical laser plasma cloud into a vacuum magnetic field in the regime of nonmagnetized ions. The role of Hall fields and currents in the anomalously fast dynamics of the magnetic field during the collapse phase of a diamagnetic cavity is considered. Detailed spatial measurements of the azimuthal Hall fields configuration are demonstrated and their relationship to diamagnetic cavity collapse is determined. As a result of the experiment, data were obtained confirming the hypothesis about the transfer of the main magnetic field by the movement of electrons associated with Hall currents.

作者简介

А. Chibranov

Institute of Laser Physics Siberian Branch of the Russian Academy of Sciences

编辑信件的主要联系方式.
Email: chibranov2013@yandex.ru
俄罗斯联邦, Novosibirsk

I. Shaikhislamov

Institute of Laser Physics Siberian Branch of the Russian Academy of Sciences

Email: chibranov2013@yandex.ru
俄罗斯联邦, Novosibirsk

А. Berezutskiy

Institute of Laser Physics Siberian Branch of the Russian Academy of Sciences

Email: chibranov2013@yandex.ru
俄罗斯联邦, Novosibirsk

V. Posukh

Institute of Laser Physics Siberian Branch of the Russian Academy of Sciences

Email: chibranov2013@yandex.ru
俄罗斯联邦, Novosibirsk

P. Trushin

Institute of Laser Physics Siberian Branch of the Russian Academy of Sciences

Email: chibranov2013@yandex.ru
俄罗斯联邦, Novosibirsk

Yu. Zakharov

Institute of Laser Physics Siberian Branch of the Russian Academy of Sciences

Email: chibranov2013@yandex.ru
俄罗斯联邦, Novosibirsk

I. Miroshnichenko

Institute of Laser Physics Siberian Branch of the Russian Academy of Sciences

Email: chibranov2013@yandex.ru
俄罗斯联邦, Novosibirsk

М. Rumenskikh

Institute of Laser Physics Siberian Branch of the Russian Academy of Sciences

Email: chibranov2013@yandex.ru
俄罗斯联邦, Novosibirsk

V. Terekhin

Russian Federal Nuclear Center, All-Russian Research Institute of Experimental Physics

Email: chibranov2013@yandex.ru
俄罗斯联邦, Sarov

参考

  1. P.A. Bernhardt, R.A. Roussel‐Dupre, M.B. Pongratz, G. Haerendel, A. Valenzuela, D.A. Gurnett, and R.R. Anderson, J. Geophys. Res. Space Phys. 92, 5777 (1987).
  2. P.A. Bernhardt, Physics of Fluids B: Plasma Physics 4, 2249 (1992).
  3. N.A. Krall and P.C. Liewer, Phys. Rev. A 4, 2094 (1971).
  4. A.B. Hassam and J.D. Huba, Geophys. Res. Lett. 14 (1), 60 (1987).
  5. Y.P. Zakharov, A.M. Orishich, A.G. Ponomarenko and V.G. Posukh, Plasma Phys. Rep. 12, 674 (1986).
  6. И.М. Подгорный и Р.З. Сагдеев, УФН. 98, 409 (1969).
  7. K. Schindler, Reviews of Geophysics 7 (1–2), 51 (1969).
  8. R.C. Davidson and N.T. Gladd, Phys. Fluids. 18, 1327 (1975).
  9. N.T. Gladd, Plasma Phys. 18, 27 (1976).
  10. P.C. Liewer and R.C. Davidson, Nucl. Fusion 17, 85 (1977).
  11. B.H. Ripin, E.A. McLean, C.K. Manka, C. Pawley, J.A. Stamper, T.A. Peyser, A.N. Mostovych, J. Grun, A.B. Hassam, and J. Huba, Phys. Rev. Lett. 59, 2299 (1987).
  12. S. Okada, K. Sato and T. Sekiguchi, Jpn. J. Apl. Phys. 20, 157 (1981).
  13. A.G. Berezutsky, A.A. Chibranov, M.A. Efimov, V.G. Posukh, M.S. Rumenskikh, P.A. Trushin, I.B. Miroshnichenko, Yu.P. Zakharov, V.A. Terekhin and I.F. Shaikhislamov, Plasma Phys. Rep. 49, 351 (2023).
  14. Yu.P. Zakharov, A.M. Orishich, A.G. Ponomarenko and I.F. Shaikhislamov, in Proc. 10th European School Plasma Physics (Tbilisi). 184 (1990).
  15. S.I. Vainshtein, S.M. Chitre and A.V. Olinto, Phys. Rev. E 61, 4422 (2000).
  16. A.M. Bergel’son, Yu.P. Raizer and S.T. Surzhikov, J. Appl. Mech. Tech. Phys. 32, 316 (1991).
  17. А.Collette and W. Gekelman, Phys. Rev. Lett. 105, 195003 (2010).
  18. А.Collette and W. Gekelman, Phys. Plasmas 18, 055705 (2011).
  19. C.P. Escoubet, M. Fehringer and M. Goldstein, Ann. Geophys. 19, 1197 (2001).
  20. J.L. Burch, T.E. Moore, R.B. Torbert and R.B. Giles, Space Sci. Rev. 199, 5 (2016).
  21. А.М. Оришич, В.Г. Посух, В.Н. Снытников Мощные СO2-лазеры для плазменных экспериментов и технологии (Сборник ИТПМ, Новосибирск, 56, 1986).
  22. Ю.П. Захаров, А.М. Оришич и А.Г. Пономаренко Лазерная плазма и лабораторное моделирование нестационарных космических процессов (ИТПМ СО АН СССР, Новосибирск, ответственный редактор Н. Г. Преображенский, 219, 1988).

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