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A high-efficiency low-noise signal amplification mechanism for photodetectors

机译:光电探测器的高效低噪声信号放大机构

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Recently we discovered a signal amplification mechanism to amplify photocurrent with high efficiency and low noise. Unlike conventional impact ionization used in avalanche photodetectors, the new amplification mechanism can produce high (>1000) gain with very low excess noise factor (<2 for Si) under very low bias voltage (3 V). The new amplification mechanism offers a promising solution for light detection for Si-photonics, imaging, and sensing. Physics of this mechanism lies in two subsequent processes i) Auger excitation between mobile and highly localized electrons and ii) electron-phonon coupling. In this paper, experimental results are supported by the proposed physical model using simulations within density functional theory (DFT) framework.
机译:最近我们发现了一种信号放大机制,以扩增具有高效率和低噪声的光电流。与雪崩光电探测器中使用的常规碰撞电离不同,新的扩增机构可以在非常低的偏压(3V)下具有非常低的过量噪声系数(SI)的高(> 1000)增益。新的扩增机构提供了对Si-光子,成像和感测的光检测的有希望的解决方案。这种机制的物理在于在移动和高度局部电子和II)之间的两个后续过程I)螺旋螺旋件电子 - 声子耦合。在本文中,使用密度泛函理论(DFT)框架内的模拟来支持实验结果。

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