Analysis of the fusion-effectiveness of active and passive pulse-stackers

R. Harney, J. Schipper
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Abstract

Isentropic compression of thermonuclear fuel pellets in laser fusion systems requires a laser pulse with a faster-than-exponential rise in intensity. One method of producing such pulses, known as pulse-stacking, consists of generating a sequence of pulses with appropriate amplitudes and recombining them with appropriate time delays to form an approximation to the required pulse shape. Numerous active and passive pulse-stacking systems have been proposed, although adequate documentation on these is almost entirely lacking. In this report we analyze the performance characteristics of several of the better-documented systems: the Thomas-KMS fusion pulse-stacker,1 the Pockels cell pulse-stacker of Harney,2 and the Emmett-LLL pulse-stacker.3 These systems are typical of the best suggestions to date and are shown schematically in Figs. 1(a)-(c).
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主动式和被动式脉冲叠加器的融合效能分析
在激光聚变系统中,热核燃料球团的等熵压缩要求激光脉冲的强度增长快于指数。产生这种脉冲的一种方法,称为脉冲叠加,包括产生一系列具有适当幅度的脉冲,并将它们与适当的时间延迟重新组合,以形成与所需脉冲形状的近似。已经提出了许多有源和无源脉冲叠加系统,尽管几乎完全缺乏关于这些系统的充分文件。在本报告中,我们分析了几个记录较好的系统的性能特征:Thomas-KMS融合脉冲叠加器,1哈尼的Pockels细胞脉冲叠加器,2和emmet - lll脉冲叠加器这些系统是迄今为止最好的建议的典型,如图1(a)-(c)所示。
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