Design and development of a real-time readout electronics system to retrieve data from a square multi-anode photomultiplier tube for neutron gamma pulse shape discrimination

M. Cieslak, K. Gamage
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引用次数: 1

Abstract

Pulse Shape Discrimination (PSD) algorithms can reliably separate neutrons and gamma-ray photons interacting in a scintillation detector. When implemented in the digital domain, the PSD algorithms allow real-time discrimination between neutron and gamma sources. This paper presents a design of a readout electronics system to retrieve data from a multi-anode photomultiplier tube (MAPMT) for a scintillator based coded-aperture neutron imager. The scintillator is to be coupled with Hamamatsu H9500, a square MAPMT, where each anode of the MAPMT is linked to a resistor network to infer the position of incidence of radiation within the scintillant. Additionally, the resistor network output signals are to be filtered through a novel noise reduction circuit to preserve the data corresponding to each pulse. Localised pulses are digitised using high sampling rate Analogue to Digital Converter (ADC). Sampled signals are temporarily stored in a local ping-pong buffer, before being processed on a field programmable gate array (FPGA). Initial results suggest that 150 MSPS rate provides sufficient information for neutron gamma source discrimination using PSD. Parallel real-time signal processing, implemented on the FPGA, enables multi-channel functioning to generate an array of interactions within the scintillator in terms of gamma rays and neutrons.
一个实时读出电子系统的设计和开发,从方形多阳极光电倍增管中检索数据,用于中子伽马脉冲形状判别
脉冲形状判别(PSD)算法可以可靠地分离闪烁探测器中相互作用的中子和伽马射线光子。当在数字域实现时,PSD算法可以实时区分中子源和伽马源。本文设计了一种用于多阳极光电倍增管(MAPMT)的读出电子系统,用于基于闪烁体的编码孔径中子成像仪的数据检索。闪烁体将与Hamamatsu H9500(一个方形MAPMT)耦合,其中MAPMT的每个阳极连接到一个电阻网络,以推断闪烁体内辐射入射的位置。此外,电阻网络输出信号将通过一种新型降噪电路进行滤波,以保留与每个脉冲相对应的数据。局部脉冲采用高采样率的模数转换器(ADC)进行数字化处理。采样信号暂时存储在本地乒乓缓冲器中,然后在现场可编程门阵列(FPGA)上进行处理。初步结果表明,150 MSPS的速率为PSD鉴别中子源提供了足够的信息。在FPGA上实现的并行实时信号处理,使多通道功能能够在闪烁体内以伽马射线和中子的形式产生一系列相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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