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利用电阻梯度产生的磁开关装置实现相对论电子在高密度等离子体中的聚焦。

Focusing of relativistic electrons in dense plasma using a resistivity-gradient-generated magnetic switchyard.

机构信息

Central Laser Facility, Rutherford-Appleton Laboratory, Chilton, Oxon., OX11 0QX, United Kingdom.

出版信息

Phys Rev Lett. 2012 Mar 23;108(12):125004. doi: 10.1103/PhysRevLett.108.125004. Epub 2012 Mar 20.

Abstract

A method for producing a self-generated magnetic focussing structure for a beam of laser-generated relativistic electrons using a complex array of resistivity gradients is proposed and demonstrated using numerical simulations. The array of resistivity gradients is created by using a target consisting of alternating layers of different Z material. This new scheme is capable of effectively focussing the fast electrons even when the source is highly divergent. The application of this technique to cone-guided fast ignition inertial confinement fusion is considered, and it is shown that it may be possible to deposit over 25% of the fast electron energy into a hot spot even when the fast electron divergence angle is very large (e.g., 70° half-angle).

摘要

提出并利用数值模拟演示了一种使用复杂电阻率梯度阵列产生激光产生相对论电子束的自发生磁聚焦结构的方法。通过使用由不同 Z 材料的交替层组成的目标来创建电阻率梯度阵列。即使源非常发散,这种新方案也能够有效地聚焦快速电子。考虑将该技术应用于锥形引导的快速点火惯性约束聚变,结果表明,即使快速电子发散角非常大(例如,70°半角),也有可能将超过 25%的快速电子能量沉积到热点中。

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