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An ultra efficient, internally regulated signal amplification mechanism for light detection in semiconductors

机译:一种用于半导体光检测的超高效内部调节信号放大机制

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Avalanche photodiodes based on impact ionization can amplify optical signals, but the gain is associated with large excess noise and requires high bias near or above breakdown (for Geiger mode). Here we present a detector using the cycling excitation process (CEP) for signal amplification. This can be realized in a heavily compensated Si p-n junction, and shows ultra high gain at very low bias (<;4 V), possess an intrinsic, phonon-mediated regulation process to keep the device stable without any quenching device required in today's Geiger-mode avalanche detectors.
机译:基于碰撞电离的雪崩光电二极管可以放大光信号,但是增益与大的过量噪声相关,并且在击穿附近或以上需要高偏压(对于盖革模式)。在这里,我们介绍了一种使用循环激发过程(CEP)进行信号放大的检测器。这可以在补偿很重的Si pn结中实现,并在非常低的偏置(<; 4 V)时显示出超高增益,具有固有的,声子介导的调节过程,以保持器件稳定,而无需使用当今的Geiger淬灭器件模式雪崩探测器。

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