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Measurement of the neutron flux in the CPL underground laboratory and simulation studies of neutron shielding for WIMP searches

机译:CPL地下实验室中子通量的测量和WIMP搜索的中子屏蔽模拟研究

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Searches for weakly interacting massive particles (WIMPs) can be carried out based on the detection of nuclear recoil energy in CsI(Tl) crystals. It is crucial to minimize the neutron background as well as to fully understand the remaining background sources through adequate shielding when using the pulse shape discrimination method for WIMP detection. We have measured the neutron flux at 350 m minimum depth, where the CheongPyung underground laboratory (CPL) is located, to be 3.00 +/- 0.02 (stat.) +/-0.05 (syst.) x 10(-5) neutrons/cm(2)/s with the neutron energy in the range 1.5 < E-n < 6 MeV. Using the GEANT4 simulation, we have demonstrated that the neutron flux can be reduced sufficiently for dark matter searches with 30 cm of polyethylene passive shield and 20 cm of BC501A liquid scintillator active shield. The neutron induced background at a few keV energy deposit in CsI crystal is less than 0.001 counts/keV/ kg/day. An active shield not only reduces the neutron background but can also reduce the uncertainty in the neutron background estimation. (C) 2003 Elsevier B.V. All rights reserved. [References: 21]
机译:可以基于对CsI(Tl)晶体中核后坐能量的检测来进行对弱相互作用的大颗粒(WIMP)的搜索。当使用脉冲形状判别方法进行WIMP检测时,至关重要的是最小化中子本底,并通过适当的屏蔽充分了解其余本底源。我们在清平地下实验室(CPL)所在的最小深度350 m处测得的中子通量为3.00 +/- 0.02(标准)+/- 0.05(系统)x 10(-5)中子/ cm(2)/ s,中子能量在1.5

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