TCV失控电子的溴化镧检测器。

IF 1.7 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION
L Simons, J Cerovsky, J Decker, B P Duval, O Ficker, M Hoppe, U Sheikh
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引用次数: 0

摘要

托卡马克等离子体中失控电子的安全控制和耗散对未来聚变反应堆的运行至关重要。测量托卡马克中RE能量的演化对于理解它们的产生、传输和终止是非常重要的。利用2″× 2″圆柱形掺杂铈的溴化镧(LaBr3:Ce)闪烁体与快速光电倍增管耦合,研制了一种新型伽马射线光谱仪,用于研究托卡马克构型变量(TCV)上的失控电子。该诊断方法能够测量1 ~ 20mev之间的稀土轫致辐射能谱,在1.44 MeV时峰值高度分辨率为1.91%。利用其高达2.66 MeV的自发射对探测器进行了校准,并使用Geant4进行了建模。然后应用该模型来预测探测器对来自TCV的光子的响应。首次在TCV上测量了能量为0.5 MeV ~ 8MeV的高能硬x射线(HXR)光谱。在TCV中,用该系统进行的观测被证明可以深入了解电流坡道期间RE能量的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A lanthanum bromide detector of runaway electrons for TCV.

The safe control and dissipation of Runaway Electrons (REs) generated in tokamak plasmas is vital for the operation of future fusion reactors. Measuring the evolution of RE energy in tokamaks is important for understanding their generation, transport, and termination. A new gamma ray spectrometer using a 2″ × 2″ cylindrical, cerium doped lanthanum bromide (LaBr3:Ce) scintillator coupled to a fast photomultiplier tube was developed for studying runaway electrons on the Tokamak à Configuration Variable (TCV). This diagnostic is capable of measuring the RE bremsstrahlung energy spectrum between 1 and 20 MeV with a peak height resolution of 1.91% at 1.44 MeV. A calibration of the detector using its self-emission up to 2.66 MeV was performed and modeled using Geant4. This model was then applied to predict the detector response to photons originating from TCV. The diagnostic was employed to measure the high energy Hard X-Ray (HXR) spectrum with energies in the range from 0.5 MeV to ∼8MeV on TCV for the first time. In TCV, the observations made with this system are demonstrated to provide insights into the change in RE energies during current ramps.

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来源期刊
Review of Scientific Instruments
Review of Scientific Instruments 工程技术-物理:应用
CiteScore
3.00
自引率
12.50%
发文量
758
审稿时长
2.6 months
期刊介绍: Review of Scientific Instruments, is committed to the publication of advances in scientific instruments, apparatuses, and techniques. RSI seeks to meet the needs of engineers and scientists in physics, chemistry, and the life sciences.
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