首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A first prototype of C_6D_6 total-energy detector with SiPM readout for neutror capture time-of-flight experiments
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A first prototype of C_6D_6 total-energy detector with SiPM readout for neutror capture time-of-flight experiments

机译:具有SIPM读数的C_6D_6总能量检测器的第一个原型,用于中枢捕获飞行时间实验

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摘要

Low efficiency total-energy detectors (TEDs) are one of the main tools for neutron capture cross section measurements utilizing the time-of-flight (TOF) technique. State-of-the-art TEDs are based on a C_6D_6 liquid-scintillation cell optically coupled to a fast photomultiplier tube. The large photomultiplier tube represents yet a significant contribution to the so-called neutron sensitivity background, which is one of the most conspicuous sources of uncertainty in this type of experiments. Here we report on the development of a first prototype of a TED based on a silicon-photomultiplier (SiPM) readout, thus resulting in a lightweight and much more compact detector. Apart from the envisaged improvement in neutron sensitivity, the new system uses low voltage (+28 V) and low current supply (~50 mA), which is more practical than the ~kV supply required by conventional photomultipliers. One important difficulty hindering the earlier implementation of SiPM readout for this type of detector was the large capacitance for the output signal when all pixels of a SiPM array are summed together. The latter leads to long pulse rise and decay times, which are not suitable for time-of-flight experiments. In this work we demonstrate the feasibility of a Schottky-diode multiplexing readout approach, that allows one to preserve the excellent timing properties of SiPMs, hereby paving the way for their implementation in future neutron TOF experiments.
机译:低效率总能量探测器(TEDS)是利用飞行时间(TOF)技术的中子捕获横截面测量的主要工具之一。最先进的TED基于C_6D_6液体闪烁电池光学耦合到快速光电倍增管。大型光电倍增管代表了所谓中子敏感背景的显着贡献,这是这种实验中最具显着的不确定性的源之一。在这里,我们报告了基于硅 - 光电倍增器(SIPM)读出的TED的第一个原型的开发,从而导致轻质和更紧凑的检测器。除了设想的中子敏感性的改进外,新系统采用低电压(+28 v)和低电流供应(〜50 mA),这比传统光电倍增器所需的〜kV供应更实用。妨碍此类检测器的SIPM读数的早期实施的一个重要困难是当SIPM阵列的所有像素一起总结时输出信号的大电容。后者导致长脉冲上升和衰减时间,这不适用于飞行时间实验。在这项工作中,我们展示了肖特基二极管多路复用读数方法的可行性,这允许一个保留SIPMS的出色时序特性,特此为其在未来的中子TOF实验中铺平道路。

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