Laboratory Evidence of Confinement and Acceleration of Wide-Angle Flows by Toroidal Magnetic Fields
编号:44 访问权限:仅限参会人 更新:2024-04-22 22:43:24 浏览:110次 口头报告

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摘要
Astrophysical jets play crucial roles in star formation and transporting angular momentum away from accretion discs, however, their collimation mechanism is still a subject of much debate due to the limitations of astronomical observational techniques and facilities. Here, a strong quasi-static toroidal magnetic field is generated through the interaction between lasers and a four-post nickel target, and our all-optical laboratory experiments reveal that a wide-angle plasma plume can be collimated in the presence of toroidal magnetic fields. Besides the confinement effects, the experiments show the jet can also be accelerated by the enhanced thermal pressure due to the toroidal magnetic fields. These findings are verified by radiation magneto-hydrodynamic simulations. The experimental results suggest the astrophysical narrow plasma flow can be produced by the confinement of wide-angle winds through toroidal fields
关键词
jet,Laboratory astrophysics,magnetic field
报告人
Zhu Lei
Institute of Applied Physics and Computational Mathematics

稿件作者
Zhu Lei Institute of Applied Physics and Computational Mathematics
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重要日期
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    05月13日

    2024

    05月17日

    2024

  • 03月31日 2024

    注册截止日期

  • 04月15日 2024

    摘要截稿日期

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冲击波物理与爆轰物理全国重点实验室
浙江大学物理学院
中国核学会脉冲功率技术及其应用分会
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