Optimized online filter stack spectrometer for ultrashort X-ray pulses

被引:0
|
作者
JiaXing Wen [1 ,2 ]
Ge Ma [2 ,3 ]
MingHai Yu [1 ]
YuChi Wu [1 ]
YongHong Yan [1 ]
ShaoYi Wang [1 ]
HuaiZhong Gao [2 ,3 ]
LuShan Wang [4 ]
YuGang Zhou [4 ]
Qiang Li [4 ]
Yue Yang [1 ]
Fang Tan [1 ]
XiaoHui Zhang [1 ]
Jie Zhang [1 ]
WenBo Mo [1 ,2 ]
JingQin Su [1 ]
WeiMin Zhou [1 ]
YuQiu Gu [1 ]
Ming Zeng [2 ,3 ]
ZongQing Zhao [1 ]
机构
[1] Science and Technology on Plasma Physics Laboratory,Laser Fusion Research Center,CAEP
[2] Department of Engineering Physics,Tsinghua University
[3] Key Laboratory of Particle and Radiation Imaging (Tsinghua University),Ministry of Education
[4] School of Information Engineering,Southwest University of Science and
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TL817 [谱仪];
学科分类号
摘要
Currently,with the advent of high-repetition-rate laser-plasma experiments,the demand for online diagnosis for the X-ray spectrum is increasing because the laser-plasma-generated X-ray spectrum is very important for characterizing electron dynamics and applications.In this study,scintillators and silicon PIN (P-type–intrinsic-N-type semiconductor) diodes were used to construct a wideband online filter stack spectrometer.The X-ray sensor and filter arrangement was optimized using a genetic algorithm to minimize the condition number of the response matrix.Consequently,the unfolding error was significantly reduced based on numerical experiments.The detector responses were quantitatively calibrated by irradiating the scintillator and PIN diode with various nuclides and comparing the measured-ray peaks.A prototype 15-channel spectrometer was developed by integrating an X-ray detector with front-and back-end electronics.The prototype spectrometer could record X-ray pulse signals at a repetition rate of 1 kHz.Furthermore,an optimized spectrometer was employed to record the real-time spectra of laser-driven bremsstrahlung sources.This optimized spectrometer o ers a compact solution for spectrum diagnostics of ultrashort X-ray pulses,exhibiting improved accuracy in terms of spectrum measurements and repetition rates,and could be widely used in next-generation high-repetition-rate high-power laser facilities.
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页码:153 / 166
页数:14
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