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首页> 外文期刊>Quantum electronics >Generation of laser plasma bunches with a high efficiency of energy concentration for laboratory simulation of collisionless shock waves in magnetised cosmic plasma
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Generation of laser plasma bunches with a high efficiency of energy concentration for laboratory simulation of collisionless shock waves in magnetised cosmic plasma

机译:用于实验室模拟磁化宇宙等离子体中无碰撞冲击波的高能效激光等离子体束的生成

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摘要

We present the results of first experiments on the formation of collisionless shock waves (CSWs) in background plasma by injecting laser plasma bunches transverse to the magnetic field (as a piston) with a maximum energy up to 100 J per unit of solid angle and with a high enough degree of ion magnetisation. With this aim in view, on a unique KI-1 facility at the Institute of Laser Physics, Siberian Branch of the Russian Academy of Sciences (ILP), a plastic (polyethylene) target irradiated by a CO2 laser in the most energy-efficient regime (near the plasma formation threshold) and a highly ionised hydrogen plasma with a high concentration in a large volume (not less than 1 m(3)) have been employed. As a result of model experiments performed on the basis of a model of collisionless interaction of plasma flows, developed at the VNIIEF and being adequate to the problem under consideration, not only an intensive, background-induced, deceleration of a super-Alfven laser plasma flow, but also the formation in that flow of a strong perturbation having the properties of a subcritical CSW and propagating transverse to the magnetic field, have been first registered in the laboratory conditions.
机译:我们通过注入横向于磁场(作为活塞)的激光等离子体束(最大立体能量为每单位立体角最大100 J),在背景等离子体中形成无碰撞冲击波(CSW)的第一个实验结果。足够高的离子磁化强度。为此目的,在俄罗斯科学院西伯利亚分校激光物理研究所的独特KI-1设施上,在最节能的情况下用CO2激光辐照的塑料(聚乙烯)靶材(接近等离子体形成阈值)和大体积(不小于1 m(3))高浓度的高度电离的氢等离子体已被使用。作为在VNIIEF开发的等离子流无碰撞相互作用模型的基础上进行的模型实验的结果,该实验不仅能解决超级Alfven激光等离子体的强烈,背景引起的减速问题,而且还可以充分考虑所考虑的问题在实验室条件下,首先已经记录了具有亚临界CSW特性的强扰动并横向于磁场传播的强烈扰动的形成过程。

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