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New developments in energy transfer and transport studies in relativistic laser-plasma interactions

机译:相对论激光-等离子体相互作用中能量转移和输运研究的新进展

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摘要

Two critical issues related to the success of fast ignition inertial fusion have been vigorously investigated in a co-ordinated campaign in the European Union and the United States. These are the divergence of the fast electron beam generated in intense, PW laser-plasma interactions and the fast electron energy transport with the use of high intensity contrast ratio laser pulses. Proof is presented that resistivity gradient-induced magnetic fields can guide fast electrons over significant distances in (initially) cold metallic targets. Comparison of experiments undertaken in both France and the United States suggests that an important factor in obtaining efficient coupling into dense plasma is the irradiation with high intensity contrast ratio laser pulses, rather than the colour of the laser pulse itself.
机译:在欧盟和美国的一次协调运动中,已经大力研究了与快速点火惯性聚变成功有关的两个关键问题。这些是在强烈的PW激光-等离子体相互作用中产生的快速电子束的发散,以及使用高强度对比度激光脉冲的快速电子能量传输。证明电阻率梯度感应的磁场可以引导快速电子在(最初)冷金属靶中的显着距离上运动。在法国和美国进行的实验比较表明,获得与致密等离子体的有效耦合的重要因素是高强度对比度激光脉冲的照射,而不是激光脉冲本身的颜色。

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