论文标题

评估塑料闪烁棒的响应和ISMRAN实验中非反应器环境中中子捕获时间的测量

Evaluation of the response of plastic scintillator bars and measurement of neutron capture time in non-reactor environment for the ISMRAN experiment

论文作者

Dey, R., Netrakanti, P. K., Mishra, D. K., Behera, S. P., Sehgal, R., Jha, V., Pant, L. M.

论文摘要

我们提供了一项详细的研究,以详细研究对不同放射性源的响应以及与印度闪烁体矩阵的无反应环境背景的测量,用于反应堆抗神经(ISMRAN)探测器设置,包括9 $ \ times $ 10 $ \ $ \ times $ 10的塑料闪烁杆(PSBS)阵列(psbs)阵列。这些测量值在ISMRAN检测器设置的上下文中很有用,该设置将用于检测反应堆抗中性诺替氏($ {\ bar {\nesuremathν}} _ {e} $)并测量其能量光谱,并通过倒数beta decay(IBD)过程进行测量。基于GEANT4的蒙特卡洛(MC)模拟用于了解ISMRAN检测器的光学传递,能量分辨率和非线性。已经开发了一项详细的分析程序,以理解ISMRAN探测器在非反应器环境中使用ISMRAN探测器设置的自然放射性,宇宙和宇宙诱导的背景,该程序基于其能量沉积,键命中的数量以及触发事件的位置和时间的拓扑事件选择标准。比较了放射性$γ$ +正电子源(例如$ \ mathrm {{}^{22} na} $,已比较了重建的重建总和数的数据和命中率的分布。已经使用涉及测得的快速中子的飞行时间(TOF)的新技术研究了ISMRAN阵列中的快速中子能量响应和捕获时间分布。观察到的特征中子捕获时间($τ$)为68.29 $ \ pm $ 9.48 $μ$ S与$ \ sim $ \ sim $ 65 $μ$ S达成了良好的一致性。这些实验测量的结果将有助于区分反应堆内外的反应堆中反应堆中的IBD事件的相关和不相关的背景事件。

We present a detailed study on detector response to different radioactive sources and the measurements of non-reactor environmental backgrounds with the Indian Scintillator Matrix for Reactor Anti-Neutrinos (ISMRAN) detector setup consisting of 9$\times$10 Plastic Scintillator Bars (PSBs) array at BARC, Mumbai. These measurements are useful in the context of the ISMRAN detector setup, which will be used to detect the reactor anti-neutrinos (${\bar{\ensuremathν}}_{e}$) and measure its energy spectra, through the inverse beta decay (IBD) process. A GEANT4 based Monte Carlo (MC) simulation is used to understand the optical transmission, energy resolution and energy non-linearity of the ISMRAN detector. A detailed analysis procedure has been developed to understand the natural radioactive, cosmogenic and cosmic muon-induced backgrounds with the ISMRAN detector setup in a non-reactor environment, based on their energy deposition, number of bars hit as well as topological event selection criteria in position and time for triggered events. Data and MC simulated distributions of reconstructed sum energy and number of bars hit has been compared for the radioactive $γ$ + positron source such as $\mathrm{{}^{22}Na}$ placed at the center of the ISMRAN array. Fast neutron energy response and capture time distribution in ISMRAN array has been studied using a novel technique involving Time of Flight (TOF) of the measured fast neutrons. The observed characteristic neutron capture time ( $τ$ ) of 68.29 $\pm$ 9.48 $μ$s is in good agreement with $\sim$65 $μ$s obtained from MC simulation. These experimentally measured results will be useful for discriminating the correlated and uncorrelated background events from the true IBD events in reactor ON and OFF conditions inside the reactor hall.

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