Southwestern Institute of Physics, PO Box 432, Chengdu 610041, China.
Institute of Nuclear Science and Technology, Sichuan University, Chengdu 610041, China.
Rev Sci Instrum. 2022 Dec 1;93(12):123509. doi: 10.1063/5.0117186.
A new broad-energy, high-resolution gamma ray spectrometer (GRS) with Compton suppression function has been developed recently in the HL-2A tokamak to obtain the gamma ray information in the energy range of 0.1-10 MeV. This is the first time to develop an anti-Compton GRS for a magnetic confinement fusion device. The anticoincidence detector consists of a large-volume high purity germanium (HPGe) crystal (Φ63 × 63 mm) as the primary detector and eight trapezoidal bismuth germinate (BGO) scintillators (trapezoid crystal with 30 mm thickness) as the secondary detector. The anti-coincidence data processing is implemented by a digital-based data acquisition system with fast digitization and software signal processing technology. Using radioisotope gamma ray sources and Monte Carlo N-Particle code, the energy and efficiency of the spectrometer have been calibrated and quantitatively tested. The Compton continuum suppression factor reaches 4.2, and the energy resolution (Full Width at Half Maximum) of the 1.332 MeV full energy peak for Co is 2.1 keV. Measurements of gamma ray spectra with Compton suppression using the spectrometer have been successfully performed during HL-2A discharges with different conditions. The performance of the spectrometer and the first experimental results are presented in this paper.
最近,在 HL-2A 托卡马克装置中开发了一种具有康普顿抑制功能的新型宽能、高分辨率伽马射线谱仪(GRS),以获取 0.1-10 MeV 能量范围内的伽马射线信息。这是第一次为磁约束聚变装置开发反康普顿 GRS。反符合探测器由一个大体积高纯锗(HPGe)晶体(Φ63×63mm)作为主探测器和八个梯 形 铋 锗 矿(BGO)闪烁体(30mm 厚的梯形晶体)作为次探测器组成。反符合数据处理是通过基于数字的数 据采集系统实现的,该系统具有快速数字化和软件信号处理技术。利用放射性同位素伽马射线源和蒙特卡罗 N-粒子代码,对谱仪的能量和效率进行了校准和定量测试。康普顿连续谱抑制因子达到 4.2,Co 的 1.332 MeV 全能峰的能量分辨率(半高全宽)为 2.1keV。在不同条件下的 HL-2A 放电中,成功地使用谱仪进行了带有康普顿抑制的伽马射线谱测量。本文介绍了谱仪的性能和初步实验结果。