论文标题

硅量子光子学中的近乎理想的自发光子源

Near-ideal spontaneous photon sources in silicon quantum photonics

论文作者

Paesani, Stefano, Borghi, Massimo, Signorini, Stefano, Maïnos, Alexandre, Pavesi, Lorenzo, Laing, Anthony

论文摘要

虽然集成光子学是用于量子信息处理的强大平台,但光子量子计算的体系结构对高质量信息载体的需求严格要求。高度无法区分和纯净的单个光子的来源,它们是近乎确定性的,要么以高效率预示,而且适合大规模制造,这是难以捉摸的。在这里,我们演示了同时满足这些要求的片上光子源。我们的光子源是使用成熟过程在硅中制造的,并利用一种新型的双模式泵划分的激发方案,通过在低静止螺旋的多模式波导中通过模式的自发四波混合来设计频谱纯光子对的发射。我们同时测量$ 0.9904 \ pm 0.0006 $的频谱纯度,相互差不多$ 0.987 \ pm 0.002 $,$> 90 \%$ $ $ $ $ $ $ $ $。我们测量芯片量子干扰,可见度为$ 0.96 \ pm 0.02 $,来自不同来源的预示光子。这些结果代表了在集成光子学中缩放量子信息处理的决定性步骤。

While integrated photonics is a robust platform for quantum information processing, architectures for photonic quantum computing place stringent demands on high quality information carriers. Sources of single photons that are highly indistinguishable and pure, that are either near-deterministic or heralded with high efficiency, and that are suitable for mass-manufacture, have been elusive. Here, we demonstrate on-chip photon sources that simultaneously meet each of these requirements. Our photon sources are fabricated in silicon using mature processes, and exploit a novel dual-mode pump-delayed excitation scheme to engineer the emission of spectrally pure photon pairs through intermodal spontaneous four-wave mixing in low-loss spiralled multi-mode waveguides. We simultaneously measure a spectral purity of $0.9904 \pm 0.0006$, a mutual indistinguishably of $0.987 \pm 0.002$, and $>90\%$ intrinsic heralding efficiency. We measure on-chip quantum interference with a visibility of $0.96 \pm 0.02$ between heralded photons from different sources. These results represent a decisive step for scaling quantum information processing in integrated photonics.

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