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Infrared Quantum Counting By Nondegenerate Two Photon Conductivity In Gaas

机译:Gaas中非简并两个光子电导率的红外量子计数

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摘要

We report on infrared quantum counting of photons at optical communication wavelengths based on nondegenerate two-photon absorption in a GaAs photomultiplier tube. The detected photon energy is lower than the GaAs band gap and the energy difference is complemented by a high intensity pump field. This detection setup is simple, compact, has a broad spectral bandwidth, and benefits from the intrinsic low noise and dark counts of large band gap semiconductor junctions.
机译:我们报告了基于GaAs光电倍增管中非简并双光子吸收的光通信波长处的光子的红外量子计数。检测到的光子能量低于GaAs带隙,并且能量差由高强度泵浦场补充。这种检测设置简单,紧凑,具有宽光谱带宽,并受益于固有的低噪声和大带隙半导体结的暗计数。

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