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Frequency multiplexing for quasi-deterministic heralded single-photon sources

机译:准确定性先驱单光子源的频率复用

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摘要

Parametric single-photon sources are well suited for large-scale quantum networks due to their potential for photonic integration. Active multiplexing of photons can overcome the intrinsically probabilistic nature of these sources, resulting in near-deterministic operation. However, previous implementations using spatial and temporal multiplexing scale unfavorably due to rapidly increasing switching losses. Here, we break this limitation via frequency multiplexing in which switching losses remain fixed irrespective of the number of multiplexed modes. We use low-noise optical frequency conversion for efficient frequency switching and demonstrate multiplexing of three modes. We achieve a generation rate of 4.6 × 104 photons per second with an ultra-low g(2)(0) = 0.07 indicating high single-photon purity. Our scalable, all-fiber multiplexing system has a total loss of just 1.3 dB, such that the 4.8 dB multiplexing enhancement markedly overcomes switching loss. Our approach offers a promising path to creating a deterministic photon source on an integrated chip-based platform.
机译:参数化单光子源具有光子集成的潜力,非常适合大规模量子网络。光子的主动多路复用可以克服这些源的固有概率性质,从而产生近乎确定的操作。然而,由于快速增加的开关损耗,使用空间和时间多路复用的先前实现方式不利地缩放。在这里,我们通过频率复用打破了这一限制,其中,无论复用模式的数量如何,开关损耗都保持固定。我们将低噪声光学频率转换用于有效的频率切换,并演示三种模式的复用。我们实现了每秒4.6×10 4 光子的生成速率,并且超低的g (2)(0)= 0.07表示单光子纯度很高。我们可扩展的全光纤多路复用系统的总损耗仅为1.3µdB,因此4.8µdB的复用增强显着克服了开关损耗。我们的方法为在基于集成芯片的平台上创建确定性光子源提供了一条有希望的途径。

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