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基于固体相对论透明度的明亮激光驱动中子源。

Bright laser-driven neutron source based on the relativistic transparency of solids.

作者信息

Roth M, Jung D, Falk K, Guler N, Deppert O, Devlin M, Favalli A, Fernandez J, Gautier D, Geissel M, Haight R, Hamilton C E, Hegelich B M, Johnson R P, Merrill F, Schaumann G, Schoenberg K, Schollmeier M, Shimada T, Taddeucci T, Tybo J L, Wagner F, Wender S A, Wilde C H, Wurden G A

机构信息

Institut für Kernphysik, Technische Universität Darmstadt, Schloßgartenstrasse 9, D-64289 Darmstadt, Germany and Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Phys Rev Lett. 2013 Jan 25;110(4):044802. doi: 10.1103/PhysRevLett.110.044802. Epub 2013 Jan 24.

Abstract

Neutrons are unique particles to probe samples in many fields of research ranging from biology to material sciences to engineering and security applications. Access to bright, pulsed sources is currently limited to large accelerator facilities and there has been a growing need for compact sources over the recent years. Short pulse laser driven neutron sources could be a compact and relatively cheap way to produce neutrons with energies in excess of 10 MeV. For more than a decade experiments have tried to obtain neutron numbers sufficient for applications. Our recent experiments demonstrated an ion acceleration mechanism based on the concept of relativistic transparency. Using this new mechanism, we produced an intense beam of high energy (up to 170 MeV) deuterons directed into a Be converter to produce a forward peaked neutron flux with a record yield, on the order of 10(10)  n/sr. We present results comparing the two acceleration mechanisms and the first short pulse laser generated neutron radiograph.

摘要

中子是一种独特的粒子,可用于从生物学、材料科学到工程和安全应用等众多研究领域的样本探测。目前,只有大型加速器设施才能获得明亮的脉冲源,近年来对紧凑型源的需求日益增长。短脉冲激光驱动中子源可能是一种紧凑且相对廉价的方式,用于产生能量超过10兆电子伏特的中子。十多年来,实验一直在尝试获得足以满足应用需求的中子数量。我们最近的实验展示了一种基于相对论透明概念的离子加速机制。利用这种新机制,我们产生了一束高强度的高能(高达170兆电子伏特)氘核束,将其导向铍转换器,以产生具有创纪录产额(约10(10) n/sr)的向前峰值中子通量。我们展示了比较两种加速机制的结果以及第一张短脉冲激光产生的中子射线照片。

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