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Investigation on the priming effect of a CVD diamond microdosimeter

Investigation on the priming effect of a CVD diamond microdosimeter
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摘要 CVD diamond microdosimeter is an ideal substitute of common Si.GaAs detector for extremely strong radiation experimental environment due to its high band gap energy, fast charge collection, low dielectric constant and hardness. In order to improve its character, a CVD diamond microdosimeter was irradiated by a proton dose of 46 Gy, and a lateral micro-ion beam induced charge (IBIC) technique was utilized to characterize it in low beam current (~fA). It was clearly shown that charge collection efficiency and energy resolution were greatly improved after proton irradiation of that dose. Moreover, the homogeneities of both its counting performance and collection efficiency were enhanced. Proton irradiation of 46 Gy has been proved to be an effective way to prime a CVD diamond. CVD diamond microdosimeter is an ideal substitute of common Si. GaAs detector for extremely strong radiation experimental environment due to its high band gap energy, fast charge collection, low dielectric constant and hardness. In order to improve its character, a CVD diamond microdosimeter was irradiated by a proton dose of 46 Gy, and a lateral micro-ion beam induced charge (IBIC) technique was utilized to characterize it in low beam current (~fA). It was clearly shown that charge collection efficiency and energy resolution were greatly improved after proton irradiation of that dose. Moreover, the homogeneities of both its counting performance and collection efficiency were enhanced. Proton irradiation of 46 Gy has been proved to be an effective way to prime a CVD diamond.
出处 《Nuclear Science and Techniques》 SCIE CAS CSCD 2002年第3期161-166,共6页 核技术(英文)
关键词 CVD宝石微剂量仪 起爆效力 实验研究 CVD diamond microdosimeter, Collection efficiency, Lateral micro-ion beam induced charge
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参考文献5

  • 1The RD42 Collaboration, R and D proposal, Development of Diamond Tracking Detectors for High Luminosity Experiments at the LHC. DRDC/P56, CERN/DRDC 94-21, May, 1994
  • 2St Gobain/Norton Diamond Film, Goddard Road, Northboro, Ma 01532, USA
  • 3Meier D. CVD diamond sensors for particle detection and tracking, inaugural dissertation. Physics Department of Heidelberg University, Dusseldorf, 1999
  • 4Breese M B. J Appl Phys, 1993, 74(6):15
  • 5Zhu J Q. Trend Nucl Phys (in Chinese), 1992, 9(1):50

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