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Rate capability and magnetic field tolerance measurements of fast timing microchannel plate photodetectors

机译:快速定时微通道板光电探测器的速率能力和磁场公差测量

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Microchannel plate photodetectors provide both picosecond time resolution and sub-millimeter position resolution, making them attractive photosensors for particle identification detectors of a future U.S. Electron Ion Collider. We have tested the rate capability and magnetic field tolerance of 6 x 6 cm(2) microchannel plate photodetectors fabricated at Argonne National Laboratory. The microchannel plate photodetector is designed as a low-cost all-glass vacuum package with a chevron pair stack of next-generation microchannel plates functionalized by atomic layer deposition. The rate capability test was performed using Fermilab's 120 GeV/c primary proton beam, and the magnetic field tolerance test was performed using a solenoid magnetic with tunable magnetic field strength up to 4 T. The measured gain of the microchannel plate photodetector is stable up to 75 kHz/cm(2) and varies depending on the applied magnetic field strength and the rotation angle relative to the magnetic field direction. (C) 2017 Elsevier B.V. All rights reserved.
机译:微通道板光电探测器可提供皮秒级的时间分辨率和亚毫米级的位置分辨率,从而使其成为未来美国电子对撞机的粒子识别探测器的诱人光电传感器。我们已经测试了在Argonne国家实验室制造的6 x 6 cm(2)微通道板光电探测器的速率能力和磁场耐受性。微通道板光电探测器设计为低成本的全玻璃真空包装,具有人字形成对堆叠的下一代微通道板,这些原子通过原子层沉积功能化。速率能力测试是使用Fermilab的120 GeV / c初级质子束进行的,磁场耐受性测试是使用电磁线圈进行的,磁场强度可调至4T。微通道板光电探测器的测量增益稳定至75 kHz / cm(2),并根据所施加的磁场强度和相对于磁场方向的旋转角度而变化。 (C)2017 Elsevier B.V.保留所有权利。

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