Hybrid integrated quantum photonic circuits.

Hybrid integrated quantum photonic circuits.
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混合集成量子光子电路。

DOI:
10.1038/s41566-020-0609-x
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发表时间:
2020
期刊:
影响因子:
35
通讯作者:
Zwiller V
Zwiller V
中科院分区:
物理与天体物理1区
文献类型:
--
作者:
Elshaari AW;Pernice W;Srinivasan K;Benson O;Zwiller V

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基于芯片的光子量子电路的最新发展从根本上影响了量子信息处理。然而,单片光子平台满足大多数量子应用的严格要求是具有挑战性的。在单个功能单元中结合不同光子技术的混合平台具有克服单片光子电路的局限性的巨大潜力。本文综述了混合量子光子学集成的进展,讨论了包括光连接和操作条件在内的重要设计考虑,并重点介绍了几种成功实现量子隐形传态的关键物理资源。最后,我们讨论了实现未来先进的大规模混合器件的路线图,超越了固态平台,这对量子信息应用具有巨大的潜力。
Recent developments in chip-based photonic quantum circuits has radically impacted quantum information processing. However, it is challenging for monolithic photonic platforms to meet the stringent demands of most quantum applications. Hybrid platforms combining different photonic technologies in a single functional unit have great potential to overcome the limitations of monolithic photonic circuits. Our review summarizes the progress of hybrid quantum photonics integration, discusses important design considerations including optical connectivity and operation conditions, then highlights several successful realizations of key physical resources for building a quantum-teleporter. We conclude by discussing the roadmap for realizing future advanced large-scale hybrid devices, beyond the solid state platform, which hold great potential for quantum information applications.
片上单光子过滤和混合量子光子电路中的多路复用。
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发表时间: 2017-08-30
影响因子: 16.6
作者:
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