レーザー研究
Online ISSN : 1349-6603
Print ISSN : 0387-0200
ISSN-L : 0387-0200
レーザーによる実験室宇宙物理:無衝突衝撃波に伴う電磁場乱流
蔵満 康浩坂和 洋一森田 太智森高 外征雄佐野 孝好松本 洋介水田 晃大西 直文高部 英明
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2013 年 41 巻 1 号 p. 20-

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Kelvin-Helmholtz vortices and resultant turbulences are essential in many space and astrophysical phenomena, as in transport of solar wind to Earth’s magnetosphere,1) and triggered star formation in giant molecular clouds.2,3) However, while global images of astrophysical phenomena are obtained from their emissions, local observations of physical quantities are inaccessible. Antithetically, although local variables are obtained by direct measurements with spacecrafts, global structures are diffi cult to obtain in solar-terrestrial phenomena. An alternative way to investigate space and astrophysical phenomena is laboratory simulations; rapid growth of laser technologies allows us to model such phenomena in the laboratories. 4‒7) Here we report the experimental results of turbulent electric fi eld driven by Kelvin- Helmholtz instability associated with laser produced collisionless shock waves. Our results demonstrate that laboratory experiments are capable to identify the shock electric fi eld and related instability. This will provide us a complementary tool to investigate space and astrophysical phenomena.
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© 2013 一般社団法人 レーザー学会
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