论文标题

朱诺低能事件的半分析能量响应模型

A semi-analytical energy response model for low-energy events in JUNO

论文作者

Kampmann, Philipp, Cheng, Yaping, Ludhova, Livia

论文摘要

江门地下中微子天文台(JUNO)是一个下一代中微子实验,预计将于2022年完成。作为主要目标,它旨在确定使用20 kton液体闪烁液检测器的中微子质量订购,其中微子质量订购为3-4 $σ$显着性。它将在基线约53 km的两个核电站中测量来自两个核电站的电子抗中性旋转的振荡能谱,而在1 MEV时,前所未有的能量分辨率为3%。 Juno实验的要求是以下精度了解检测器的能量非线性。由于液体闪烁体的光产率并未完全线性与检测到的粒子的能量并取决于粒子类型,因此本文提出了该光屈服的模型。基于电子的能量非线性模型,本文将转化为正上音和伽马脉的更复杂的能量响应。这种转换使用快速而简单的算法来计算伽马生成的二次电子的频谱,该智能是在此处介绍的,并可以公开访问潜在用户。还讨论了如何使用本文所示的结果从使用伽马源的检测器校准获得正电子非线性。

The Jiangmen Underground Neutrino Observatory (JUNO) is a next-generation neutrino experiment under construction in China expected to be completed in 2022. As the main goal it aims to determine the neutrino mass ordering with 3-4 $σ$ significance using a 20 kton liquid scintillator detector. It will measure the oscillated energy spectrum of electron anti-neutrinos from two nuclear power plants at about 53 km baseline with an unprecedented energy resolution of 3% at 1 MeV. A requirement of the JUNO experiment is the knowledge of the energy non-linearity of the detector with a sub-percent precision. As the light yield of the liquid scintillator is not fully linear to the energy of the detected particle and dependent on the particle type, a model for this light yield is presented in this paper. Based on an energy non-linearity model of electrons, this article provides the conversion to the more complex energy response of positrons and gammas. This conversion uses a fast and simple algorithm to calculate the spectrum of secondary electrons generated by a gamma, which is introduced here and made open access to potential users. It is also discussed how the positron non-linearity can be obtained from the detector calibration with gamma sources using the results presented in this article.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源