用于ICF离子温度诊断的中子飞行时间能谱仪

Z. Tang, Jian-lun Yang, Shu-huai Wen, Gen-xing Wang, Yu-zhi Guo, Hong-qiong Yang, Ma Chi
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引用次数: 5

摘要

设计了一种用于惯性约束聚变(ICF)离子温度测量的电流型中子飞行时间能谱仪(nTOF),可减小中子产率较低时聚变中子能谱的测量误差。该光谱仪由一个厚度为3mm、满有效体积为104 cm3的浅杯形ST1422快速塑料闪烁体、一个微通道板光电倍增管(MCP-PMT)、一根长度为20 m的同轴电缆(SUJ-50-7)和一个带宽为7 GHz的瞬态示波器组成。对光谱仪及其组成元件的主要性能进行了标定。时间响应函数的上升时间和频宽分别为260 ps和850 ps。该光谱仪将于明年在上海光学精密机械研究所盛光2号激光装置直接驱动内爆实验中用于测量离子温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neutron time of flight energy spectrometer for ICF ion temperature diagnostic
A current-mode neutron time-of-flight(nTOF) energy spectrometer for inertial confinement fusion(ICF) ion temperature measurements has been designed which will reduce measuring error of fusion neutron energy spectra when the neutron yield is low. The spectrometer consists of a shallow cup-shaped ST1422 fast plastic scintillator with a thickness of 3 mm and full effective volume of 104 cm3, a microchannel plate photomultiplier tube(MCP-PMT), a piece of coaxial cable(SUJ-50-7) with a length of 20 m, and a transient oscilloscope with a bandwidth of 7 GHz. The main performances of the spectrometer and its components have been calibrated. The rise-time and FWHM of the temporal response function are 260 ps and 850 ps, respectively. This spectrometer will be used to measure ion temperature in the direct-driven implosion experiments on Sheng-Guang 2 laser facility at Shanghai Institute of Optics and Fine Mechanics(SIOFM) next year.
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