Author:
Xu Hangkun,Abusleme Angel,Anfimov Nikolay V.,Callier Stéphane,Campeny Agustin,Cao Guofu,Cao Jun,Cerna Cedric,Chen Yu,Chepurnov Alexander,Ding Yayun,Druillole Frederic,Fabbri Andrea,Fei Zhengyong,Gromov Maxim,He Miao,He Wei,He Yuanqiang,Hor Joseph Y. K.,Hou Shaojing,Hu Jianrun,Hu Jun,Huss Cédric,Ji Xiaolu,Jiang Tao,Jiang Xiaoshan,Jolliet Cécile,Li Daozheng,Li Min,Li Ruhui,Li Yichen,Liu Caimei,Liu Mengchao,Liu Yunzhe,Lombardo Claudio,Di Lorenzo Selma Conforti,Lu Peizhi,Luo Guang,Mari Stefano M.,Ma Xiaoyan,Montini Paolo,Ochoa-Ricoux Juan Pedro,Pei Yatian,Perrot Frédéric,Petrucci Fabrizio,Qian Xiaohui,Rebii Abdel,Roskovec Bedr̆ich,Rybnikov Arsenij,Steiger Hans,Sun Xilei,Walker Pablo,Wang Derun,Wang Meifen,Wang Wei,Wang Wei,Wang Zhimin,Wu Diru,Xiao Xiang,Xie Yuguang,Xie Zhangquan,Yan Wenqi,Yang Huan,Yao Haifeng,Ye Mei,Yuan Chengzhuo,Zamogilnyi Kirill,Zhan Liang,Zhang Jie,Zhang Shuihan,Zhao Rong
Abstract
AbstractThe Taishan Antineutrino Observatory (TAO or JUNO-TAO) is a satellite experiment of the Jiangmen Underground Neutrino Observatory (JUNO). Located near a reactor of the Taishan Nuclear Power Plant, TAO will measure the reactor antineutrino energy spectrum with an unprecedented energy resolution of $$<2\%$$
<
2
%
at 1 MeV. Energy calibration is critical to achieve such a high energy resolution. Using the Automated Calibration Unit (ACU) and the Cable Loop System (CLS), multiple radioactive sources are deployed to various positions in the TAO detector for energy calibration. The residual non-uniformity can be controlled within 0.2%. The energy resolution degradation and energy bias caused by the residual non-uniformity can be controlled within 0.05% and 0.3%, respectively. The uncertainty of the non-linear energy response can be controlled within 0.6% with the radioactive sources of various energies, and could be further improved with cosmogenic $$^{12}{\textrm{B}}$$
12
B
which is produced by the interaction of cosmic muon in the liquid scintillator. The stability of other detector parameters, e.g., the gain of each Silicon Photo-multiplier, will be monitored with an ultraviolet LED calibration system.
Publisher
Springer Science and Business Media LLC
Subject
Physics and Astronomy (miscellaneous),Engineering (miscellaneous)
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. Towards a sub-percent precision measurement of sin2 θ13 with reactor antineutrinos;Journal of High Energy Physics;2023-03-13
2. Overview of the JUNO-TAO detector;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2023-03