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Proposal and proof-of-principle demonstration of fast-switching broadband frequency shifting for a frequency-multiplexed quantum repeater

机译:用于频率 - 多路复用量子中继器的快速切换宽带频率转换的提案和原则证明

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A proposal for fast-switching broadband frequency-shifting technology making use of frequency conversion in a nonlinear crystal is set forth, whereby the shifting is imparted to the converted photons by creating a bank of frequency-displaced pump modes that can be selected by a photonic switch and directed to the nonlinear crystal. Proof-of-principle results show that the expected frequency-shifting operation can be achieved. Even though the dimensions of the currently employed crystal and significant excess loss in the experimental setup prevented conversion of single-photon-level inputs, thorough experimental and theoretical analysis of the noise contribution allowed for estimation of the system performance in an optimized scenario, where the expected signal-to-noise ratio (SNR) for single-photon conversion and frequency shifting can reach up to 25 dB with proper narrowband filtering and state-of-the-art devices. The proposed frequency-shifting solution figures as a promising candidate for applications in frequency-multiplexed quantum repeater architectures with 25 dB output SNR (with 20% conversion efficiency) and capacity for 16 channels spread around a 100 GHz spectral region. (C) 2021 Optical Society of America
机译:提出了一种利用非线性晶体中的频率转换实现快速切换宽带频移技术的方案,通过创建一组频率位移的泵浦模式,将频移传递给转换后的光子,该泵浦模式可由光子开关选择并定向到非线性晶体。原理验证结果表明,可以实现预期的移频操作。尽管目前使用的晶体尺寸和实验装置中的大量过量损耗阻止了单光子级输入的转换,但对噪声贡献的全面实验和理论分析允许在优化方案中估计系统性能,其中,通过适当的窄带滤波和最先进的设备,单光子转换和频移的预期信噪比(SNR)可以达到25 dB。所提出的频移解决方案有望应用于输出信噪比为25 dB(转换效率为20%)的频率复用量子中继器体系结构中,并能在100 GHz频谱范围内传输16个信道。(2021)美国光学学会

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