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Photon detection with high gain avalanche photodiode arrays

机译:高增益雪崩光电二极管阵列的光子检测

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The detection of light emitted in fast scintillating fibers and Cerenkov radiators used for fiber calorimetry and tracking applications in high energy colliders, requires fast detector arrays with high sensitivity to short wavelength photons. Photomultiplier tubes, the traditional imaging detectors for short wavelength optical radiation, have limited spatial resolution and require expensive anti-magnetic shielding. We report on short wavelength sensitivity improvement and detection efficiency performance for a novel p-n junction planar structure silicon avalanche photodiode (APD) array, operated in Geiger mode. The APD array provides a high sensitivity detector for applications requiring the detection of light spatial distributions with single photon sensitivity.
机译:为了检测在高能量对撞机中用于光纤量热和跟踪应用的快速闪烁光纤和切伦科夫辐射器发出的光,需要对短波长光子具有高灵敏度的快速检测器阵列。光电倍增管是用于短波长光辐射的传统成像探测器,其空间分辨率有限,并且需要昂贵的防磁屏蔽。我们报告了在Geiger模式下运行的新型p-n结平面结构硅雪崩光电二极管(APD)阵列的短波长灵敏度提高和检测效率性能。 APD阵列为需要检测具有单光子灵敏度的光空间分布的应用提供了高灵敏度检测器。

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