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On the 100th anniversary of Sergei Ivanovich Syrovatskii's birth. Conferences and symposia


Current sheets in plasma: from theory to experiment

 
Prokhorov General Physics Institute of the Russian Academy of Sciences, ul. Vavilova 38, Moscow, 119991, Russian Federation

The main stages of experimental studies of the dynamics and evolution of current sheets formed in plasma in strong nonuniform magnetic fields are reviewed. These studies were initiated by Sergei Ivanovich Syrovatskii, who made an outstanding contribution to the creation of the MHD theory of current sheets. The experiments were developed in close interaction with the theory and under the influence of theoretical ideas and concepts. It was found that, in high-conductivity plasma, the formation of a current sheet leads to a concentration of magnetic energy, while during explosive destruction of the sheet, the magnetic energy is converted into the energy of plasma and accelerated electrons. It is shown that in many cases the rupture of the sheet is triggered by a rapid local increase in the plasma temperature and a violation of the transverse equilibrium within the current sheet. It has been proven that current sheets can develop in 3D magnetic configurations, and the range of such configurations has been determined. Reverse currents are found to play an important role in limiting the duration of plasma flows accelerated in current sheets.

Fulltext pdf (4.2 MB)
Fulltext is also available at DOI: 10.3367/UFNe.2025.03.039938
Keywords: current sheets, magnetic reconnection, solar flares, MHD theory, laboratory experiments, plasma dynamics, 3D’magnetic configurations
PACS: 52.35.Vd, 52.40.Kh, 94.05.−a (all)
DOI: 10.3367/UFNe.2025.03.039938
URL: https://ufn.ru/en/articles/2025/8/f/
2025PhyU...68..823F
Citation: Frank A G "Current sheets in plasma: from theory to experiment" Phys. Usp. 68 823–842 (2025)
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Received: 30th, June 2025, 5th, March 2025

Îðèãèíàë: Ôðàíê À Ã «Òîêîâûå ñëîè â ïëàçìå — îò òåîðèè ê ýêñïåðèìåíòó» ÓÔÍ 195 875–895 (2025); DOI: 10.3367/UFNr.2025.03.039938

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