Neutron emission spectrometer in magnetic confinement fusion

Siriyaporn Sangaroon, Kunihiro Ogawa, Mitsutaka Isobe
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Abstract

Comprehensive neutron diagnostics have been developed and used to study magnetic confinement fusion plasmas. The neutron emission spectrometer is one of the most powerful tools for understanding fusion plasma physics. Neutron spectroscopy was originally developed to measure the fuel ion temperature in thermal plasmas. With the advent of fast ion heating, the role of neutron spectroscopy has evolved to deepen the understanding of fast ion confinement. Since neutrons are primarily produced by the fusion reaction between the bulk ion and the fast ion, the neutron energy carries information about the fast ion energy. The details of neutron emission spectrometers, i.e., time-of-flight spectrometer, magnetic proton recoil spectrometer, and compact neutron emission spectrometer, as well as representative results of neutron spectrometry in Large Helical Device are reviewed.

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磁约束聚变中的中子发射光谱仪
综合中子诊断学已经发展并应用于磁约束聚变等离子体的研究。中子发射光谱仪是了解聚变等离子体物理的最有力的工具之一。中子光谱学最初是为了测量热等离子体中的燃料离子温度而发展起来的。随着快离子加热的出现,中子光谱学的作用不断发展,加深了对快离子约束的理解。由于中子主要是由体离子和快离子之间的聚变反应产生的,中子能量携带着快离子能量的信息。介绍了中子发射光谱仪,即飞行时间光谱仪、磁性质子反冲光谱仪和紧凑型中子发射光谱仪的详细情况,以及大型螺旋装置中具有代表性的中子光谱分析结果。
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8.20
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