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首页> 外文期刊>EPJ Web of Conferences >Optimal control of laser plasma instabilities using Spike Trains of Uneven Duration and Delay (STUD pulses) for ICF and IFE
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Optimal control of laser plasma instabilities using Spike Trains of Uneven Duration and Delay (STUD pulses) for ICF and IFE

机译:使用ICF和IFE的不均匀持续时间和延迟(STUD脉冲)的脉冲序列优化控制激光等离子体的不稳定性

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An adaptive method of controlling parametric instabilities in laser produced plasmas is proposed. It involves fast temporal modulation of a laser pulse on the fastest instability's amplification time scale, adapting to changing and unknown plasma conditions. These pulses are comprised of on and off sequences having at least one or two orders of magnitude contrast between them. Such laser illumination profiles are called STUD pulses for Spike Trains of Uneven Duration and Delay. The STUD pulse program includes scrambling the speckle patterns spatially in between the laser spikes. The off times allow damping of driven waves. The scrambling of the hot spots allows tens of damping times to elapse before hot spot locations experience recurring high intensity spikes. Damping in the meantime will have healed the scars of past growth. Another unique feature of STUD pulses on crossing beams is that their temporal profiles can be interlaced or staggered, and their interactions thus controlled with an on-off switch and a dimmer.
机译:提出了一种控制激光产生的等离子体中的参数不稳定性的自适应方法。它涉及在不稳定性最快的放大时间尺度上对激光脉冲进行快速时间调制,以适应不断变化的未知等离子体条件。这些脉冲由开和关序列组成,它们之间具有至少一个或两个数量级的对比度。这样的激光照明轮廓被称为不均匀持续时间和延迟的尖峰列的STUD脉冲。 STUD脉冲程序包括在激光尖峰之间在空间上对斑点图案进行加扰。关闭时间允许衰减驱动波。在热点位置经历反复出现的高强度峰值之前,热点的扰动允许经过数十个阻尼时间。与此同时,阻尼将治愈过去增长的伤疤。交叉波束上的STUD脉冲的另一个独特特征是,它们的时间分布可以交错或交错,因此它们的交互作用通过通断开关和调光器进行控制。

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