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The Effect of an External Magnetic Field on the Plume Expansion Dynamics of Laser-Induced Aluminum Plasma

机译:外部磁场对激光诱导铝等离子体羽流膨胀动力学的影响

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In this work, we investigated the plasma morphology induced by a Nd:YAG laser with the aim of improving the understanding of the formation and dynamics of the plasma in two cases, with and without a magnetic field. Single laser pulse production of a plasma in the absence and presence of a magnetic field was performed with an aluminum target in air. A fast photography technique was employed to obtain information about the expansion dynamics and confinement of the aluminum plasma in each case. The generation of the laser plasma was allowed to expand at two locations with different magnetic field strengths, which correspond to the strength 0.58 T in the center of two magnetic poles and 0.83 T at a distance of 4 mm from the upper pole (N). The plume showed lateral confinement at longer delays when the target was placed at the center of the two poles. When the target was placed at a distance of 4 mm from the upper pole it was observed that the plume was divided into two lobes at the initial stage and traveled towards the center of the magnetic field with further elapse of time.
机译:在这项工作中,我们研究了Nd:YAG激光诱导的等离子体形态,目的是在两种情况下(有或没有磁场的情况下)增进对等离子体形成和动力学的理解。在有和没有磁场的情况下,用铝靶在空气中进行等离子体的单激光脉冲产生。在每种情况下,采用快速照相技术获得有关铝等离子体的膨胀动力学和约束的信息。允许激光等离子体的产生在具有不同磁场强度的两个位置处扩展,这对应于两个磁极中心的强度0.58 T和距上磁极(N)4 mm处的0.83 T的强度。当将目标放置在两个极点的中心时,羽流在较长的延迟时间内显示出横向约束。当将目标放置在距上极4 mm的距离处时,可以观察到羽流在初始阶段被分为两个裂片,并随着时间的推移流向磁场中心。

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