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New Method to Define and Optimize the Diagnostic Electrical Acquisition Channels Application to the LMJ DMX Plasma Diagnostic

机译:用于定义和优化诊断电气采集通道应用于LMJ DMX等离子体诊断的新方法

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The X-ray broadband spectrometer, DMX, is among the first plasma diagnostics to be deployed on Laser Megajoule (LMJ). The emitted X-ray spectrum from laser-produced plasmas is measured in 20 channels from 50 eV up to 20 keV. Each band combines mirrors and filters which realize X-ray band-pass filter and a coaxial diode coupled by a coaxial cable with a fast digitizer that realize the acquisition. The measurement accuracy depends on the equipment performance and the spectrum to acquire. In this context, Commissariat a l'Energie Atomique (CEA) is developing a numerical method called Acquisition Channel Simulator (ACS) whose purpose is to define and optimize all electrical acquisition channels of such diagnostics. The ACS goals are to define numerical model for each element the electrical channel and optimize it. This paper introduces the work led by CEA regarding the development of the ACS method particularly for the equipment model and the first results for the DMX diagnostic.
机译:X射线宽带光谱仪DMX是在激光Megajoule(LMJ)上部署的第一个等离子体诊断之一。来自激光产生的等离子体的发射的X射线光谱在20 eP的20个通道中测量,高达20 keV。每个频带组合镜子和滤波器,该镜子和滤波器实现X射线带通滤波器和由同轴电缆耦合的同轴二极管,其具有实现采集的快速数字转换器。测量精度取决于设备性能和用于获取的频谱。在这种情况下,委员会A Energie Atomique(CEA)正在开发一种称为采集信道模拟器(ACS)的数值方法,其目的是定义和优化这种诊断的所有电采集信道。 ACS目标是为电信道的每个元素定义数值模型并优化它。本文介绍了CEA领导的工作,关于ACS方法的开发,特别是设备模型以及DMX诊断的第一个结果。

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