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国家点火装置点火规模实验中热电子数的时间分辨测量(特邀报告)

Time-resolved measurements of the hot-electron population in ignition-scale experiments on the National Ignition Facility (invited).

作者信息

Hohenberger M, Albert F, Palmer N E, Lee J J, Döppner T, Divol L, Dewald E L, Bachmann B, MacPhee A G, LaCaille G, Bradley D K, Stoeckl C

机构信息

Laboratory for Laser Energetics, University of Rochester, Rochester, New York 14623, USA.

Lawrence Livermore National Laboratory, Livermore, California 94550, USA.

出版信息

Rev Sci Instrum. 2014 Nov;85(11):11D501. doi: 10.1063/1.4890537.

Abstract

In laser-driven inertial confinement fusion, hot electrons can preheat the fuel and prevent fusion-pellet compression to ignition conditions. Measuring the hot-electron population is key to designing an optimized ignition platform. The hot electrons in these high-intensity, laser-driven experiments, created via laser-plasma interactions, can be inferred from the bremsstrahlung generated by hot electrons interacting with the target. At the National Ignition Facility (NIF) [G. H. Miller, E. I. Moses, and C. R. Wuest, Opt. Eng. 43, 2841 (2004)], the filter-fluorescer x-ray (FFLEX) diagnostic-a multichannel, hard x-ray spectrometer operating in the 20-500 keV range-has been upgraded to provide fully time-resolved, absolute measurements of the bremsstrahlung spectrum with ∼300 ps resolution. Initial time-resolved data exhibited significant background and low signal-to-noise ratio, leading to a redesign of the FFLEX housing and enhanced shielding around the detector. The FFLEX x-ray sensitivity was characterized with an absolutely calibrated, energy-dispersive high-purity germanium detector using the high-energy x-ray source at NSTec Livermore Operations over a range of K-shell fluorescence energies up to 111 keV (U Kβ). The detectors impulse response function was measured in situ on NIF short-pulse (∼90 ps) experiments, and in off-line tests.

摘要

在激光驱动的惯性约束聚变中,热电子会预先加热燃料并阻止聚变靶丸压缩至点火条件。测量热电子数量是设计优化点火平台的关键。在这些通过激光与等离子体相互作用产生的高强度激光驱动实验中,热电子可通过热电子与靶相互作用产生的轫致辐射来推断。在美国国家点火装置(NIF)[G. H. 米勒、E. I. 摩西和C. R. 韦斯特,《光学工程》43, 2841 (2004)]中,滤波荧光x射线(FFLEX)诊断仪——一种工作在20 - 500 keV范围内的多通道硬x射线光谱仪——已进行升级,以提供分辨率约为300 ps的轫致辐射光谱的全时间分辨绝对测量。最初的时间分辨数据显示出显著的背景和低信噪比,导致对FFLEX外壳进行重新设计并增强探测器周围的屏蔽。FFLEX x射线灵敏度是使用NSTec利弗莫尔运营部的高能x射线源,通过绝对校准的能量色散高纯锗探测器在高达111 keV(U Kβ)的一系列K壳层荧光能量范围内进行表征的。探测器的脉冲响应函数在NIF短脉冲(约90 ps)实验中以及离线测试中进行了原位测量。

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