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A Diamond-Detector-Based System for Spectrometry of Fast Atoms on the JET Tokamak

机译:基于钻石检测器的JET托卡马克快速原子光谱分析系统

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To study the evolution of the distribution function of fast ions with an ultimately high time resolution during both injection of neutrals and ion cyclotron plasma heating on the JET tokamak, we have developed a system for spectrometry of fast charge-exchange atoms, which consists of a spectrometric natural-diamond detector and a digital spectrometric channel. The main elements of the spectrometric system - the diamond detector, a noise-immune charge-sensitive preamplifier, and a fast analog-to-digital converter (ADC) - have been manufactured explicitly for use in spectrometry of fast charge-exchange atoms on the JET tokamak at high counting rates. The diamond detector that ensures the spectrometry of hydrogen atoms in the energy range 20-5000 keV is installed in the equatorial plane at an 18-m distance from the plasma axis at the end of the vacuum channel created for X-ray spectroscopy. A fast 14-bit ADC with 100-MHz sampling frequency and a 2-GB memory digitizes the preamplifier output signal. The developed digital spectrometric system can operate at a counting rate of up to ~10{sup}7 counts/s. Laboratory tests of the developed spectrometric system have shown that its energy resolution is no worse than the resolution of a similar analog system. In the experiments on the JET, the diamond digital spectrometric system ensures recording of the energy distributions of fast charge-exchange atoms with energies >40 keV.
机译:为了研究在JET托卡马克上注入中性离子和离子回旋加速器等离子体加热过程中最终最终具有高时间分辨率的快速离子的分布函数的演变,我们开发了一种用于快速电荷交换原子光谱的系统,该系统包括光谱天然金刚石检测器和数字光谱通道。光谱仪系统的主要元件-钻石探测器,抗噪声电荷敏感的前置放大器和快速模数转换器(ADC)-专门用于光谱仪上的快速电荷交换原子的光谱学。 JET托卡马克的计数率很高。在X射线光谱学形成的真空通道末端,将能确保20-5000 keV能量范围内的氢原子光谱的金刚石检测器安装在赤道平面内,距等离子体轴18-m距离。一个具有100MHz采样频率和2GB存储器的快速14位ADC将前置放大器的输出信号数字化。所开发的数字光谱系统可以以高达约10 {sup} 7个计数/秒的计数速率运行。对已开发的光谱系统的实验室测试表明,其能量分辨率并不比类似模拟系统的分辨率差。在JET上的实验中,钻石数字光谱系统可确保记录能量> 40 keV的快速电荷交换原子的能量分布。

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