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A new method for high-energy pulsed Gamma measurement within intense background x-rays

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【作者】 谭新建欧阳晓平王群书宋朝晖康克军夏良斌

【Author】 Tan Xin-Jian a)b) , Ouyang Xiao-Ping a)b) , Wang Qun-Shu a)b) , Song Zhao-Hui b) , Kang Ke-Jun a) , and Xia Liang-Bin b) a) Department of Engineering Physics, Tsinghua University, Key Laboratory of Particle & Radiation Imaging (Tsinghua University), Ministry of Education, Beijing 100084, China b) Northwest Institute of Nuclear Technology, Xi’an 710024, China

【机构】 Department of Engineering Physics,Tsinghua University,Key Laboratory of Particle & Radiation Imaging (Tsinghua University),Ministry of EducationNorthwest Institute of Nuclear Technology

【摘要】 The accelerator-generating 6.13 MeV pulsed Gamma by 19 F(p, αγ) 16 O reaction usually synchronizes with an intense bremsstrahlung x-ray which has a maximum energy of 1 MeV. This paper proposes a new method, named the scattering and absorbing method, to diagnose the 6.13 MeV Gamma. This method includes two parts: the detector and a scatterer placed in front of the detector. The detector converts the Gamma to electrons and then collects the electrons by a scintillator. In order to restrain the interference of the low-energy background, the scintillator collects the electrons at a small angle. The scintillator is wrapped with electro-absorbing material to absorb the low-energy electrons generated by background x-rays. The theoretical sensitivity ratio of 6.13 MeV Gamma to 1 MeV x-rays is greater than 150. The scatterer is a pretreatment tool to scatter some background x-rays away from the radial beam before they enter the detector. By varying the length, the scatterer can reduce the background x-rays to an acceptable level for the detector.

【Abstract】 The accelerator-generating 6.13 MeV pulsed Gamma by 19 F(p, αγ) 16 O reaction usually synchronizes with an intense bremsstrahlung x-ray which has a maximum energy of 1 MeV. This paper proposes a new method, named the scattering and absorbing method, to diagnose the 6.13 MeV Gamma. This method includes two parts: the detector and a scatterer placed in front of the detector. The detector converts the Gamma to electrons and then collects the electrons by a scintillator. In order to restrain the interference of the low-energy background, the scintillator collects the electrons at a small angle. The scintillator is wrapped with electro-absorbing material to absorb the low-energy electrons generated by background x-rays. The theoretical sensitivity ratio of 6.13 MeV Gamma to 1 MeV x-rays is greater than 150. The scatterer is a pretreatment tool to scatter some background x-rays away from the radial beam before they enter the detector. By varying the length, the scatterer can reduce the background x-rays to an acceptable level for the detector.

  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2010年01期
  • 【分类号】O572.212
  • 【下载频次】21
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