Detector optimization to reduce the cosmogenic neutron backgrounds in the TAO experiment

Author:

Li Ruhui,Cao Guofu,Cao Jun,Li Yichen,Wang Yifang,Wang Zhimin,Zhan Liang

Abstract

Abstract Short-baseline reactor antineutrino experiments with shallow overburden usually have large cosmogenic neutron backgrounds. The Taishan Antineutrino Observatory (TAO) is a ton-level liquid scintillator detector located at about 30 m from a core of the Taishan Nuclear Power Plant. It will measure the reactor antineutrino spectrum with high precision and high energy resolution to provide a reference spectrum for JUNO and other reactor antineutrino experiments, and provide a benchmark measurement to test nuclear databases. Background is one of the critical concerns of TAO since the overburden is just 10 meter-water-equivalent. The cosmogenic neutron background was estimated to be ∼10% of signals [1]. With detailed Monte Carlo simulations, we propose several measures in this work to reduce the neutron backgrounds, including doping Gadolinium in the buffer liquid, adding a polyethylene layer above the bottom lead shield, and optimization of the veto strategy. With these improvements, the neutron background-to-signal ratio can be reduced to ∼2%, and might be further suppressed with pulse shape discrimination.

Publisher

IOP Publishing

Subject

Mathematical Physics,Instrumentation

Reference14 articles.

1. TAO Conceptual Design Report: a Precision Measurement of the Reactor Antineutrino Spectrum with Sub-percent Energy Resolution;Abusleme,2020

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