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The Photon-Assisted Cascaded Electron Multiplier Operation in CF$_{4}$ for Ion Backflow Suppression

机译:CF中的光子辅助级联电子乘法器操作在CF <公式甲型型=“内联”> $ _ {4} $ 进行离子回流抑制

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摘要

The operation of the recently introduced photon assisted cascaded electron multiplier (PACEM) in CF4 is investigated. The PACEM uses the VUV scintillation produced in the electron avalanches of the first multiplier of the cascade to transfer the signal to the subsequent ones. The VUV scintillation induces the emission of a large number of photoelectrons from a Csl photocathode placed on the top-surface of the second multiplier. The photoelectrons are further multiplied in the subsequent stages of the cascade, resulting in efficient signal amplification. A mesh, set at a fixed voltage, is placed between the first and the second multipliers to block the charge transfer between them, thus suppressing all the ion backflow (IBF) heading to the first cascade element. The PACEM electrically isolates the first multiplier of the cascade and only the ions produced in the electron avalanches of the first element may flow back into the drift region. Operating in CF4, absolute IBFs as low as ~1 ion per primary electron are achieved for drift fields of 0.1 kV/cm, while for fields of 0.5 kV/cm the absolute IBF is ~10 ions/primary electron. This corresponds to an IBF of 10-4 at gains of 104, for time projection chambers (TPC) operating conditions, and IBFs of ~10-5 at gains of 106 for gaseous photomultipliers (GPM) operating conditions
机译:研究了CF4中最近推出的光子辅助级联电子倍增器(PACEM)的操作。 PACEM使用在级联的第一个乘法器的电子雪崩中产生的VUV闪烁,将信号传输到随后的信号。 VUV闪烁从放置在第二倍增器顶面上的Csl光阴极引发大量光电子的发射。光电子在级联的后续阶段中进一步繁殖,从而实现了有效的信号放大。在第一和第二倍增器之间放置一个设置为固定电压的网,以阻止它们之间的电荷转移,从而抑制了所有离子回流(IBF)流向第一级联元件。 PACEM电隔离级联的第一乘数,只有在第一元素的电子雪崩中产生的离子可以流回漂移区。在CF4下运行,对于0.1 kV / cm的漂移场,每个主电子的绝对IBF约为〜1离子,而对于0.5 kV / cm的场,其绝对IBF为〜10离子/一次电子。对于时间投影室(TPC)操作条件,这对应于增益为104的IBF为10-4,对于气态光电倍增器(GPM)操作条件,对应于增益为106的IBF为〜10-5。

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