Measurement of the fast neutron background at the China Jinping Underground Laboratory
arXiv:1706.06831 · doi:10.1016/j.nima.2018.01.098
Abstract
We report on the measurements of the fluxes and spectra of the environmental fast neutron background at the China Jinping Underground Laboratory (CJPL) with a rock overburden of about 6700 meters water equivalent, using a liquid scintillator detector doped with 0.5% gadolinium. The signature of a prompt nuclear recoil followed by a delayed high energy -ray cascade is used to identify neutron events. The large energy deposition of the delayed -rays from the reaction on gadolinium, together with the excellent n- discrimination capability provides a powerful background suppression which allows the measurement of a low intensity neutron flux. The neutron flux of cms in the energy range of 1 -- 10 MeV in the Hall A of CJPL was measured based on 356 days of data. In the same energy region, measurement with the same detector placed in a one meter thick polyethylene room gives a significantly lower flux of cms with 174 days of data. This represents a measurement of the lowest environmental fast neutron background among the underground laboratories in the world, prior to additional experiment-specific attenuation. Additionally, the fast neutron spectra both in the Hall A and the polyethylene room were reconstructed with the help of GEANT4 simulation.
11 pages, 11 figures, 3 tables, Submitted to NIM-A