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Chip-integrated visible-telecom photon pair sources for quantum communication

机译:芯片集成的可见电信光子对源用于量子通信

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摘要

Photon pair sources are fundamental building blocks for quantum entanglement and quantum communication. Recent studies in silicon photonics have documented promising characteristics for photon pair sources within the telecommunications band, including sub-milliwatt optical pump power, high spectral brightness, and high photon purity. However, most quantum systems suitable for local operations, such as storage and computation, support optical transitions in the visible or short near-infrared bands. In comparison to telecommunications wavelengths, the significantly higher optical attenuation in silica at such wavelengths limits the length scale over which optical-fiber-based quantum communication between such local nodes can take place. One approach to connect such systems over fiber is through a photon pair source that can bridge the visible and telecom bands, but an appropriate source, which should produce narrow-band photon pairs with a high signal-to-noise ratio, has not yet been developed. Here, we demonstrate an on-chip visible-telecom photon pair source for the first time, using high quality factor silicon nitride microresonators to generate bright photon pairs with an unprecedented coincidence-to-accidental ratio (CAR) up to (3.8 ± 0.2) × 103. We further demonstrate dispersion engineering of the microresonators to enable the connection of different species of trapped atoms/ions, defect centers, and quantum dots to the telecommunications bands for future quantum communication systems.
机译:光子对源是量子纠缠和量子通信的基本构件。硅光子学的最新研究已证明,电信频段内的光子对源具有令人鼓舞的特性,包括亚毫瓦级光泵浦功率,高光谱亮度和高光子纯度。但是,大多数适合于本地操作(例如存储和计算)的量子系统都支持可见或短近红外波段的光学跃迁。与电信波长相比,二氧化硅在这种波长下明显更高的光衰减限制了这种局部节点之间可以进行基于光纤的量子通信的长度尺度。通过光纤连接这样的系统的一种方法是通过光子对源,可以桥接可见和电信频段,但是还没有合适的源可以产生具有高信噪比的窄带光子对。发达。在这里,我们首次展示了片上可见电信光子对源,它使用高质量因子的氮化硅微谐振器生成明亮的光子对,其空前的巧合率(CAR)高达(3.8±0.2) ×10 3 。我们进一步演示了微谐振器的色散工程,以实现将不同种类的被捕获的原子/离子,缺陷中心和量子点连接到未来的量子通信系统的电信频段。

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