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Acousto-electric single-photon detector

机译:声电单光子探测器

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摘要

We propose a novel concept for a semiconductor-based single-photon detector for quantum information processing, which is capable of discriminating the number of photons in a light pulse. The detector exploits the charge transport by a surface acoustic wave (SAW) in order to combine a large photon absorption area (thus providing high photon collection efficiency) with a microscopic charge detection area, where the photo generated charge is detected with resolution at the single electron level using single electron transistors (SETs). We present preliminary results on acoustic transport measured in a prototype for the detector as well as on the fabrication of radio-frequency single-electron transistors (RF-SETs) for charge detection. The photon detector is a particular example of acousto-electric nanocircuits that are expected to be able to control both the spatial and the spin degrees of freedom of single electrons. If realized, these circuits will contribute substantially to a scalable quantum information technology.
机译:我们提出了一种用于量子信息处理的基于半导体的单光子检测器的新颖概念,其能够区分光脉冲中的光子的数量。检测器通过表面声波(SAW)利用电荷传输,以便将大的光子吸收区域(从而提供高光子收集效率)与微观电荷检测区域,其中在单个分辨率下检测照片生成的电荷使用单电子晶体管(套)的电子电平。我们在用于检测器的原型中测量的声学传输以及用于电荷检测的射频单电子晶体管(RF集)的制造的声学传输上初步结果。光子探测器是所望能够控制单个电子的空间和自由度的空间和旋转程度的特定示例。如果实现,这些电路将基本上贡献到可扩展的量子信息技术。

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