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Studying the time response of a vacuum phototriode and measurement of gamma radiation damage to high voltage capacitors and resistors

机译:研究真空光电极的时间响应和测量高压电容器和电阻器的伽马辐射损伤

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摘要

A vacuum phototriodes (VPT) are the photodetectors used in the endcaps of the Electromagnetic Calorimeter of the Compact Muon Solenoid experiment at the Large Hadron Collider at CERN. Software, interfacing with the commercial program “SIMION 3D” was written to allow the simulation of the temporal response of the VPT. Applying Ramo’s Theorem enabled the time development of the VPT signal to be calculated. In order to validate the simulations, experiments were performed using a 60 ps laser pulses (λ = 435 nm) incident on a number of VPT samples. The simulation reproduced the basic features of the operation of the VPT such as gain vs. voltage, and gain vs. magnetic field strength. The simulation also confirmed the need for a fine mesh anode to achieve a useful gain when operating at high magnetic fields. The experimental work represents the first measurements of the time response of a VPT when excited with a very fast light pulse. Both the simulated and experimental response from the VPT were observed to be fast (few ns) and quite complex. Discrepancies between the simulated and experimental signals were partially explained by a SPICE model which includes the VPT interelectrode capacitances and lead inductances. We conclude that the VPT are fast photodetectors with an intrinsic response time of order 1ns for this geometry. The VPT high-voltage filter cards, which operate at 1 kV and in an intense radiation environment, are critical components. A number of commercial off-the-shelf high voltage resistors and capacitors were evaluated at gamma doses up to 345 kGy. No significant change in value or leakage current was observed. As a result of these studies we were able to demonstrate that these inexpensive components were suitable for use in the 3100 filter cards subsequently installed in the CMS apparatus.
机译:真空光电三极管(VPT)是欧洲核子研究组织(CERN)大型强子对撞机紧凑型μon螺线管实验的电磁量热计的端盖中使用的光电探测器。编写了与商业程序“ SIMION 3D”接口的软件,以允许模拟VPT的时间响应。应用Ramo定理可以计算VPT信号的时间发展。为了验证模拟,使用入射在许多VPT样品上的60 ps激光脉冲(λ= 435 nm)进行了实验。该模拟再现了VPT工作的基本特征,例如增益与电压的关系以及增益与磁场强度的关系。该模拟还确认了在高磁场下工作时需要细网状阳极以实现有用增益的需求。实验工作代表了VPT在以非常快的光脉冲激发时的时间响应的首次测量。观察到来自VPT的模拟和实验响应都是快速的(几ns)并且非常复杂。 SPICE模型部分解释了模拟信号与实验信号之间的差异,该模型包括VPT电极间电容和引线电感。我们得出的结论是,VPT是快速光电探测器,其固有响应时间约为1ns。在1 kV且在强辐射环境中运行的VPT高压滤卡是关键组件。在高达345 kGy的伽玛剂量下评估了许多商用现货供应的高压电阻器和电容器。没有观察到值或漏电流的显着变化。这些研究的结果是,我们能够证明这些廉价的组件适用于随后安装在CMS设备中的3100滤卡。

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    Hobson P R; Yaselli Ignacio;

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  • 年度 2008
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