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作为宽带波长复用偏振纠缠光子源的单片半导体芯片。

Monolithic semiconductor chips as a source for broadband wavelength-multiplexed polarization entangled photons.

作者信息

Kang Dongpeng, Anirban Ankita, Helmy Amr S

出版信息

Opt Express. 2016 Jun 27;24(13):15160-70. doi: 10.1364/OE.24.015160.

Abstract

Generating entangled photons from a monolithic chip is a major milestone towards real-life applications of optical quantum information processing including quantum key distribution and quantum computing. Ultrabroadband entangled photons are of particular interest to various applications such as quantum metrology and multi-party entanglement distribution. In this work, we demonstrate the direct generation of broadband wavelength-multiplexed polarization entangled photons from a semiconductor chip for the first time. Without the use of any off-chip compensation or interferometry, entangled photons with a signal-idler separation as large as 95 nm in the telecom band were observed. The highest concurrence of 0.98±0.01 achieved in this work is also the highest, to the best of our knowledge, comparing to all previously demonstrated semiconductor waveguide sources. This work paves the way for fully integrated, ultrabroadband sources of polarization entangled photons.

摘要

从单片芯片中产生纠缠光子是迈向光学量子信息处理实际应用(包括量子密钥分发和量子计算)的一个重要里程碑。超宽带纠缠光子对于诸如量子计量学和多方纠缠分发等各种应用尤为重要。在这项工作中,我们首次展示了从半导体芯片直接产生宽带波长复用的偏振纠缠光子。在不使用任何片外补偿或干涉测量的情况下,观察到在电信波段信号 - 闲频分离高达95nm的纠缠光子。据我们所知,这项工作中实现的最高并发度为0.98±0.01,与之前所有已证明的半导体波导源相比也是最高的。这项工作为偏振纠缠光子的全集成超宽带源铺平了道路。

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