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高速微带多阳极多通道板探测器系统

High-speed microstrip multi-anode multichannel plate detector system.

作者信息

Riedo Andreas, Tulej Marek, Rohner Urs, Wurz Peter

机构信息

Leiden Observatory, Sackler Laboratory for Astrophysics, Leiden University, Leiden, The Netherlands.

Physics Institute, Space Research and Planetary Sciences, University of Bern, Bern, Switzerland.

出版信息

Rev Sci Instrum. 2017 Apr;88(4):045114. doi: 10.1063/1.4981813.

Abstract

High-speed detector systems with high dynamic range and pulse width characteristics in the sub-nanosecond regime are mandatory for high resolution and highly sensitive time-of-flight mass spectrometers. Typically, for a reasonable detector area, an impedance-matched anode design is necessary to transmit the registered signal fast and distortion-free from the anode to the signal acquisition system. In this report, a high-speed microstrip multi-anode multichannel plate detector is presented and discussed. The anode consists of four separate active concentric anode segments allowing a simultaneous readout of signal with a dynamic range of about eight orders of magnitude. The impedance matched anode segments show pulse width of about 250 ps, measured at full width at half maximum, and rise time of ∼170 ps, measured with an oscilloscope with a sampling rate of 20 GS/s and 4 GHz analogue bandwidth. The usage of multichannel plates as signal amplifier allowed the design of a lightweight, low power consuming, and compact detector system, suitable, e.g., for the integration into space instrumentation or portable systems where size, weight, and power consumption are limited parameters.

摘要

对于高分辨率和高灵敏度的飞行时间质谱仪而言,具备亚纳秒级高动态范围和脉冲宽度特性的高速探测器系统是必不可少的。通常,对于合理的探测器面积,需要采用阻抗匹配的阳极设计,以便将记录的信号从阳极快速且无失真地传输到信号采集系统。在本报告中,将介绍并讨论一种高速微带多阳极多通道板探测器。阳极由四个独立的有源同心阳极段组成,能够同时读出动态范围约为八个数量级的信号。阻抗匹配的阳极段在半高全宽处测量的脉冲宽度约为250 ps,使用采样率为20 GS/s和4 GHz模拟带宽的示波器测量的上升时间约为170 ps。使用多通道板作为信号放大器,使得能够设计出一种重量轻、功耗低且紧凑的探测器系统,适用于例如集成到尺寸、重量和功耗为受限参数的空间仪器或便携式系统中。

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