Compact broadband high-resolution Compton spectroscopy for laser-driven high-flux gamma rays

被引:0
|
作者
ZhenChi Zhang [1 ]
Tao Yang [1 ]
GuangYue Hu [1 ,2 ]
MengTing Li [1 ]
Wen Luo [3 ]
Ning An [4 ,5 ]
Jian Zheng [1 ,6 ]
机构
[1] CAS Key Laboratory of Geospace Environment and Department of Engineering and Applied Physics, University of Science and Technology of China
[2] CAS Center for Excellence in Ultra-Intense Laser Science (CEULS)
[3] School of Nuclear Science and Technology, University of South China
[4] National Synchrotron Radiation Laboratory, University of Science and Technology of China
[5] Anhui Specreation Instrument Technology Co, Ltd
[6] Collaborative Innovation Center of IFSA (CICIFSA), Shanghai Jiao Tong
关键词
D O I
暂无
中图分类号
TN249 [激光的应用];
学科分类号
摘要
A compact broadband Compton spectrometer with high spectral resolution has been designed to detect spectra of laser-driven high-flux gamma rays.The primary detection range of the gamma-ray spectrum is 0.5 MeV-13 MeV,although a secondary harder gamma-ray region of13 MeV-30 MeV can also be covered.The Compton-scattered electrons are spectrally resolved using a curved surface detector and a nonuniform magnetic field produced by a pair of step-like magnets.This design allows a compact structure,a wider bandwidth,especially in the lower-energy region of 0.5 MeV-2 MeV,and optimum spectral resolution.The spectral resolution is 5%-10% in the range 4 MeV-13 MeV and better than 25% in the range 0.5 MeV-4 MeV(with an Al converter of 0.25 mm thickness and a collimator of 1 cm inner diameter).Low-Z plastic materials are used on the inner surface of the spectrometer to suppress noise due to secondary X-ray fluorescence.The spectrometer can be adjusted flexibly via a specially designed mechanic al component.An algorithm based on a regularization method has also been developed to reconstruct the gamma-ray spectrum from the scattered electrons.
引用
收藏
页码:10 / 19
页数:10
相关论文
共 50 条
  • [31] High-resolution neutronics model for 238Pu production in high-flux reactors
    Pan, Qing-Quan
    Zhao, Qing-Fei
    Wang, Lian-Jie
    Xia, Bang-Yang
    Cai, Yun
    Xiong, Jin-Biao
    Liu, Xiao-Jing
    NUCLEAR SCIENCE AND TECHNIQUES, 2024, 35 (05)
  • [32] High-flux and high-resolution spectroscopic facility in the VUV region at Super-ACO
    Ito, K
    Lagarde, B
    Polack, F
    Alcaraz, C
    Nahon, L
    JOURNAL OF SYNCHROTRON RADIATION, 1998, 5 : 839 - 841
  • [33] PERFORMANCE OF A HIGH-RESOLUTION, HIGH-FLUX DENSITY SGM UNDULATOR BEAMLINE AT THE ALS (INVITED)
    WARWICK, T
    HEIMANN, P
    MOSSESSIAN, D
    MCKINNEY, W
    PADMORE, H
    REVIEW OF SCIENTIFIC INSTRUMENTS, 1995, 66 (02): : 2037 - 2040
  • [34] Design of a compact spectrometer for high-flux MeV gamma-ray beams
    Corvan, D. J.
    Sarri, G.
    Zepf, M.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2014, 85 (06):
  • [35] Compact broadband high-resolution infrared spectrometer with a dihedral reflector
    Pang, Yajun
    Zhang, Yinxin
    Yang, Huaidong
    Huang, Zhanhua
    Jin, Guofan
    OPTICS EXPRESS, 2017, 25 (13): : 14960 - 14967
  • [36] Laser-driven high-resolution patterning of indium tin oxide thin film for electronic device
    Shin, Hyunkwon
    Sim, Boyeon
    Lee, Myeongkyu
    OPTICS AND LASERS IN ENGINEERING, 2010, 48 (7-8) : 816 - 820
  • [37] A high-resolution x-ray microscope for laser-driven planar-foil experiments
    Marshall, FJ
    Allen, MM
    Knauer, JP
    Oertel, JA
    Archuleta, T
    PHYSICS OF PLASMAS, 1998, 5 (04) : 1118 - 1124
  • [38] The development of a high-resolution Eulerian radiation-hydrodynamics simulation capability for laser-driven Hohlraums
    Haines, Brian M.
    Keller, D. E.
    Long, K. P.
    McKay, M. D., Jr.
    Medin, Z. J.
    Park, H.
    Rauenzahn, R. M.
    Scott, H. A.
    Anderson, K. S.
    Collins, T. J. B.
    Green, L. M.
    Marozas, J. A.
    McKenty, P. W.
    Peterson, J. H.
    Vold, E. L.
    Di Stefano, C.
    Lester, R. S.
    Sauppe, J. P.
    Stark, D. J.
    Velechovsky, J.
    PHYSICS OF PLASMAS, 2022, 29 (08)
  • [39] High-resolution spectroscopy of a surge in an emerging flux region
    Verma, M.
    Denker, C.
    Diercke, A.
    Kuckein, C.
    Balthasar, H.
    Dineva, E.
    Kontogiannis, I.
    Pal, P. S.
    Sobotka, M.
    ASTRONOMY & ASTROPHYSICS, 2020, 639
  • [40] EQUIPMENT CONTRACTION OF COMPTON DISTRIBUTION IN A HIGH-RESOLUTION GAMMA SPECTROMETER.
    Gonchar, A.I.
    Kham'yanov, L.P.
    Instruments and Experimental Techniques (English Translation of Pribory I Tekhnika Eksperimenta), 1975, 18 (2 pt 1): : 329 - 432