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Design and function of an electron mobility spectrometer with a thick gas electron multiplier

机译:带有厚气体电子倍增器的电子迁移谱仪的设计和功能

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摘要

The design and function of an electron mobility spectrometer (EMS) including a thick gas electron multiplier (THGEM) is presented. The THGEM was designed to easily be incorporated in an existing EMS to investigate the ability to detect tritium in air using a micropattern gas detector. The THGEM and a collection plate (anode) were installed and the appropriate circuitry was designed and connected to supply the required voltages to the THGEM-EMS. An alpha source ( 241 Am) was used to generate electron-ion pairs within the gas-filled sensitive volume of the EMS. The electrons were used to investigate the THGEM-EMS response as a function of applied voltage to the THGEM and anode. The relative gas-gain and system resolution of the THGEM-EMS were measured at various applied voltage settings. It was observed a potential difference across the THGEM of +420 V and potential difference across the induction region of +150 V for this EMS setup resulted in the minimum voltage requirements to operate with a stable gain and system resolution. Furthermore, as expected, the gain is strongly affected not only by the potential difference across the THGEM, but also by the applied voltage to the anode and resulting potential difference between the THGEM and anode.
机译:介绍了一种包括厚气体电子倍增器(THGEM)的电子迁移谱仪(EMS)的设计和功能。 THGEM的设计目的是轻松整合到现有EMS中,以研究使用微模式气体检测仪检测空气中tri的能力。安装了THGEM和收集板(阳极),并设计并连接了适当的电路,以向THGEM-EMS提供所需的电压。使用alpha源(241 Am)在EMS的充满气体的敏感区内生成电子离子对。电子用于研究THGEM-EMS响应随THGEM和阳极施加电压的变化。在各种外加电压设置下,测量THGEM-EMS的相对气体增益和系统分辨率。对于该EMS设置,已观察到THGEM两端的电位差为+420 V,感应区域上的电位差为+150 V,这导致以稳定的增益和系统分辨率工作所需的最低电压。此外,正如预期的那样,增益不仅受到THGEM两端的电势差的强烈影响,而且还受到施加到阳极的电压以及THGEM与阳极之间的电势差的强烈影响。

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