Performance of the DAMPE BGO calorimeter on the ion beam test

Performance of the DAMPE BGO calorimeter on the ion beam test
复制标题

DAMPE BGO 量热仪在离子束测试中的性能

DOI:
10.1016/j.nima.2018.12.036
复制
发表时间:
2019-04
期刊:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
影响因子:
--
通讯作者:
An Qi
An Qi
中科院分区:
其他
文献类型:
--
作者:
Wei Yifeng;Zhang Yunlong;Zhang Zhiyong;Wu Libo;Wen Sicheng;Dai Haoting;Liu Chenming;Wang Xiaolian;Xu Zizong;Huang Guangshun;Feng Changqing;Liu Shubin;An Qi

文献摘要

参考文献

被引文献

相似文献

DArk Matter Particle Explorer(DAMPE)是中国用于精确测量深空高能电子,伽马射线和原子核的太空望远镜,于2015年12月17日成功发射。用铋锗氧化物(BGO)晶体制成的DAMPE电磁量能器可以测量50 GeV ~ 100 TeV的入射强子能量。2015年在CERN用离子束测试了量热计。研究了从氦到氩离子的能量响应。采用两种物理过程模型,在Geant 4软件上进行了Monte Carlo模拟,再现了模拟结果。结果表明,模拟结果与所采用的物理模型无关。此外,BGO晶体上的离子的淬灭效果观察与此束测试。淬灭衰减随原子序数的增加而增加,硼约为7%,氩约为40%。
The DArk Matter Particle Explorer (DAMPE), which is a Chinese space telescope for the precise measurement of high-energy electrons, gamma rays, and nuclei from deep space, was successfully launched on December 17, 2015. The DAMPE electromagnetic calorimeter made of bismuth germanium oxide (BGO) crystals can measure incident hadron energies from 50 GeV to 100 TeV. The calorimeter was tested with ion beams at CERN in 2015. The energy responses to ions from helium to argon are investigated. The result is reproduced by a Monte Carlo simulation based on Geant4 with two physics process models. It shows that the simulation results of a beam test are independent of the physics models adopted. Additionally, quenching effects of the BGO crystal on the ions are observed with this beam test. The quenching attenuations increase with the atomic number and were approximately 7% for boron and 40% for argon.
DOI: 10.3847/1538-4357/aa68e4
发表时间: 2017-04
期刊: The Astrophysical Journal
影响因子: --
作者:
Y. Yoon;T. Anderson;A. Barrau;N. Conklin;S. Coutu;L. Derome;J. Han;J. Jeon;K. C. Kim;
通讯作者: Y. Yoon;T. Anderson;A. Barrau;N. Conklin;S. Coutu;L. Derome;J. Han;J. Jeon;K. C. Kim;
DOI: 10.1103/physrevlett.115.211101
发表时间: 2015-11
影响因子: 8.6
作者:
M. Aguilar;D. Aisa;B. Alpat;A. Alvino;G. Ambrosi;K. Andeen;L. Arruda;N. Attig;P. Azzarello
通讯作者: M. Aguilar;D. Aisa;B. Alpat;A. Alvino;G. Ambrosi;K. Andeen;L. Arruda;N. Attig;P. Azzarello
DOI: 10.1109/tns.2015.2479091
发表时间: 2015-10
影响因子: 1.8
作者:
C. Feng;Deliang Zhang;Junbin Zhang;Shanshan Gao;Di Yang;Yunlong Zhang;Zhiyong Zhang;Shubin Liu;Q. An
通讯作者: C. Feng;Deliang Zhang;Junbin Zhang;Shanshan Gao;Di Yang;Yunlong Zhang;Zhiyong Zhang;Shubin Liu;Q. An
影响因子: 1.4
作者:
B. Lott;F. Piron;B. Blank;G. Bogaert;J. Bregeon;G. Canchel;A. Chekhtman;P. d’Avezac;D. Dumora;J. Giovinazzo;J. Grove;M. Hellström;A. Jacholkowska;W. Johnson;E. Nuss;T. Reposeur;D. Smith;K. Sümmerer
通讯作者: B. Lott;F. Piron;B. Blank;G. Bogaert;J. Bregeon;G. Canchel;A. Chekhtman;P. d’Avezac;D. Dumora;J. Giovinazzo;J. Grove;M. Hellström;A. Jacholkowska;W. Johnson;E. Nuss;T. Reposeur;D. Smith;K. Sümmerer
热量计的高动态范围读数单元
DOI: 10.1088/1674-1137/36/1/012
发表时间: 2012
期刊: Chinese Physics C
影响因子: 3.6
作者:
Cai Ming-Sheng;Hu Yi-Ming;Wu Jian;Chang Jin
通讯作者: Chang Jin