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用于惯性约束聚变和等离子体核科学的紧凑型质子光谱仪的进展。

Advances in compact proton spectrometers for inertial-confinement fusion and plasma nuclear science.

作者信息

Seguin F H, Sinenian N, Rosenberg M, Zylstra A, Manuel M J-E, Sio H, Waugh C, Rinderknecht H G, Johnson M Gatu, Frenje J, Li C K, Petrasso R, Sangster T C, Roberts S

机构信息

Plasma Science and Fusion Center, Massachusetts Institute of Technology, Cambridge, 02139, USA.

出版信息

Rev Sci Instrum. 2012 Oct;83(10):10D908. doi: 10.1063/1.4732065.

Abstract

Compact wedge-range-filter proton spectrometers cover proton energies ∼3-20 MeV. They have been used at the OMEGA laser facility for more than a decade for measuring spectra of primary D(3)He protons in D(3)He implosions, secondary D(3)He protons in DD implosions, and ablator protons in DT implosions; they are now being used also at the National Ignition Facility. The spectra are used to determine proton yields, shell areal density at shock-bang time and compression-bang time, fuel areal density, and implosion symmetry. There have been changes in fabrication and in analysis algorithms, resulting in a wider energy range, better accuracy and precision, and better robustness for survivability with indirect-drive inertial-confinement-fusion experiments.

摘要

紧凑型楔形射程滤波器质子谱仪可覆盖约3-20 MeV的质子能量。它们在欧米茄激光装置上已使用了十多年,用于测量D(3)He内爆中初级D(3)He质子、DD内爆中次级D(3)He质子以及DT内爆中烧蚀质子的能谱;目前国家点火装置也在使用它们。这些能谱用于确定质子产额、激波-爆轰时刻和压缩-爆轰时刻的壳面密度、燃料面密度以及内爆对称性。在制造和分析算法方面都有改进,从而实现了更宽的能量范围、更高的准确度和精度,以及在间接驱动惯性约束聚变实验中更强的生存能力稳健性。

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