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Response function of single crystal synthetic diamond detectors to 1-4 MeV neutrons for spectroscopy of D plasmas

机译:D等离子体光谱法的单晶合成金刚石探测器对1-4 MeV中子的响应功能

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摘要

A Single-crystal Diamond (SD) detector prototype was installed at Joint European Torus (JET) in 2013 and the achieved results have shown its spectroscopic capability of measuring 2.5 MeV neutrons from deuterium plasmas. This paper presents measurements of the SD response function to monoenergetic neutrons, which is a key point for the development of a neutron spectrometer based on SDs and compares them with Monte Carlo simulations. The analysis procedure allows for a good reconstruction of the experimental results. The good pulse height energy resolution (equivalent FWHM of 80 keV at 2.5 MeV), gain stability, insensitivity to magnetic field, and compact size make SDs attractive as compact neutron spectrometers of high flux deuterium plasmas, such as for instance those needed for the ITER neutron camera.
机译:2013年,在欧洲联合圆环(JET)上安装了单晶金刚石(SD)检测器原型,所取得的结果表明其具有从氘等离子体中测量2.5 MeV中子的光谱能力。本文介绍了对单能中子的SD响应函数的测量结果,这是开发基于SD的中子能谱仪的关键,并将其与Monte Carlo模拟进行了比较。分析程序可以很好地重建实验结果。良好的脉冲高度能量分辨率(在2.5 MeV时等效于80 keV的FWHM),增益稳定性,对磁场不敏感以及紧凑的尺寸使SD成为高通量氘等离子体的紧凑中子光谱仪(如ITER所需要的那些)的吸引力中子相机。

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