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Study of neutron sensitivity in CMS-RPC using MC simulation for two different setups

机译:使用两种不同设置的MC模拟研究CMS-RPC中的中子敏感性

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摘要

In order to investigate the neutron sensitivity we applied a realistic MC simulation based on GEANT3 code with MICAP and FLUKA interfaces for two different types of resistive plate chambers for CMS/LHC. In the present studies sensitivity calculations have been performed as a function of neutron energy in the range of 100eV to 1 GeV. In the first setup using aluminum (GND + strips), the sensitivity for an isotropic neutron source was obtained to be S_n< 9.04 x 10~(-3) at < 100MeV, while for the second setup using copper (GND + strips) sensitivity for the same source configuration is S_n < 9.91 x 10~(-3) at < 100 MeV. Both the results are relative to an RPC in double-gap configuration with an isotropic neutron source. Additionally in these setups similar characteristics have been observed for parallel neutron source configuration.
机译:为了研究中子敏感性,我们针对两种不同类型的CMS / LHC电阻板腔,应用了基于GEANT3代码并带有MICAP和FLUKA接口的逼真的MC模拟。在本研究中,已经根据中子能量在100eV至1 GeV范围内进行了灵敏度计算。在使用铝(GND +条)的第一种设置中,在<100MeV时,各向同性中子源的灵敏度为S_n <9.04 x 10〜(-3),而对于使用铜(GND +条)的第二种设置,对于相同的源配置,在<100 MeV时S_n <9.91 x 10〜(-3)。这两个结果都与具有各向同性中子源的双间隙配置中的RPC有关。此外,在这些设置中,已观察到平行中子源配置的相似特性。

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