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Studies of a hybrid avalanche photo-detector in magnetic field

机译:混合雪崩光电探测器在磁场中的研究

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For the Belle Ⅱ spectrometer a proximity focusing RICH counter with an aerogel radiator (ARICH) will be employed as a PID system in the forward endcap region of the spectrometer. The main challenge was the development of a reliable multichannel sensor for single photons that operates in the high magnetic field of the spectrometer (1.5T) and withstands the radiation levels expected at the experiment. A 144-channel Hybrid Avalanche Photo-Detector (HAPD) was developed with Hamamatsu Photonics K.K. and the mass production of ~480 HAPDs was completed recently. While our first tests of HAPD performance in the magnetic field (before mass production) showed no issues, we lately observed a presence of very large signal pulses (~5000 × single photon signal), generated internally within about 20% of HAPDs, while operating in the magnetic field. The rate of these pulses varies from sample to sample. These pulses impact the HAPD performance in two ways: they introduce periods of dead time and, in some cases, damage to the front-end electronics was observed. Here we present conditions under which such large pulses are generated, their properties and impact on HAPD performance, and discuss possible mechanism of their origin.
机译:对于BelleⅡ型光谱仪,将在光谱仪的前端盖区域中使用带有气凝胶辐射器(ARICH)的接近聚焦RICH计数器作为PID系统。主要挑战是为单光子开发一种可靠的多通道传感器,该传感器在光谱仪(1.5T)的强磁场下工作并能承受实验中预期的辐射水平。与Hamamatsu Photonics K.K共同开发了144通道混合雪崩光电探测器(HAPD)。最近完成了约480个HAPD的批量生产。虽然我们在磁场中进行HAPD性能的首次测试(批量生产之前)没有发现问题,但最近我们观察到存在非常大的信号脉冲(〜5000×单光子信号),在运行时内部会在HAPD的大约20%范围内产生在磁场中。这些脉冲的速率因样品而异。这些脉冲以两种方式影响HAPD的性能:它们会引入停滞时间,并且在某些情况下会观察到前端电子设备的损坏。在这里,我们介绍产生这种大脉冲的条件,它们的性质以及对HAPD性能的影响,并讨论其起源的可能机制。

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