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Observation of Weibel magnetic fields in laser-produced interpenetrating flows

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【作者】 施川奇袁大伟孙伟张雅芃邱志杰魏会冈张喆远晓辉赵刚

【Author】 Chuanqi Shi;Dawei Yuan;Wei Sun;Yapeng Zhang;Zhijie Qiu;Huigang Wei;Zhe Zhang;Xiaohui Yuan;Gang Zhao;Key Laboratory of Optical Astronomy, National Astronomical Observatories, Chinese Academy of Sciences;Institute for Frontiers in Astronomy and Astrophysics, Beijing Normal University;Department of Nuclear Physics, China Institute of Atomic Energy;School of Physics and Astronomy, Beijing Normal University;Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences;Key Laboratory for Laser Plasmas (MoE) and Department of Physics and Astronomy, Shanghai Jiao Tong University;School of Astronomy and Space Science, University of Chinese Academy of Sciences;

【通讯作者】 袁大伟;赵刚;

【机构】 Key Laboratory of Optical Astronomy, National Astronomical Observatories, Chinese Academy of SciencesInstitute for Frontiers in Astronomy and Astrophysics, Beijing Normal UniversityDepartment of Nuclear Physics China Institute of Atomic EnergySchool of Physics and Astronomy, Beijing Normal UniversityBeijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of SciencesKey Laboratory for Laser Plasmas (MoE) and Department of Physics and Astronomy, Shanghai Jiao Tong UniversitySchool of Astronomy and Space Science, University of Chinese Academy of Sciences

【摘要】 Weibel instability is a promising candidate mechanism for collisionless shock formation in astrophysical systems.Capturing the underlying physics of Weibel instability will help us to understand the astrophysical shock formation, magnetic field generation and amplification, particle acceleration, and so on. Laboratory astrophysics, provides a new way to study these microphysics in controlled conditions. At Shenguang-Ⅱ laser facility, the interpenetrating plasma flows are generated by eight laser beams irradiating a pair of opposing foils to mimic the supernova explosion and the ejecta sweeping up the surrounding medium. Evolution of collisionless interpenetrating plasma flows is observed using optical diagnostics. Filamentary structures appear in the interaction region and the associated magnetic strength is measured about 40 T.Theoretical analysis and simulations indicate that these characteristics are induced by nonlinear Weibel instability.

【Abstract】 Weibel instability is a promising candidate mechanism for collisionless shock formation in astrophysical systems.Capturing the underlying physics of Weibel instability will help us to understand the astrophysical shock formation, magnetic field generation and amplification, particle acceleration, and so on. Laboratory astrophysics, provides a new way to study these microphysics in controlled conditions. At Shenguang-Ⅱ laser facility, the interpenetrating plasma flows are generated by eight laser beams irradiating a pair of opposing foils to mimic the supernova explosion and the ejecta sweeping up the surrounding medium. Evolution of collisionless interpenetrating plasma flows is observed using optical diagnostics. Filamentary structures appear in the interaction region and the associated magnetic strength is measured about 40 T.Theoretical analysis and simulations indicate that these characteristics are induced by nonlinear Weibel instability.

【基金】 Project supported by the National Key Research and Development Program of China (Grant Nos. 2022YFA1603200 and 2022YFA1603204);the Fund from the Chinese Academy of Sciences Youth Interdisciplinary Team (Grant No. JCTD2022-05);the Youth Innovation Promotion Association of the Chinese Academy of Sciences, the National Natural Science Foundation of China (Grant Nos. 11873061 and 12473099);the Strategic Priority Research Program of the Chinese Academy of Sciences (Grant Nos. XDA25030500, XDA25010100, and XDA25030200)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2025年01期
  • 【分类号】P14
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