45纳米CMOS集成反馈控制的量子相关光子对源

D. Kramnik, I. Wang, J. Cabanillas, Anirudh Ramesh, S. Buchbinder, P. Zarkos, C. Adamopoulos, Premjeet Kumar, M. Popović, V. Stojanović
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引用次数: 1

摘要

集成光子学提供了有用的光子量子信息处理所需的可扩展性。许多光学谐振器必须对准相同的泵浦波长,以产生驱动此类系统的量子相关光子对源,但现有的解决方案依赖于基于外部光电二极管和笨重的片外电子设备的手动校准或离线调谐,限制了可扩展性。在这里,我们展示了在硅微环中使用集成电路与光子学集成的四波混频(受激和自发)的反馈控制。载流子扫描产生的反馈信号能够在光子对生成机制中实现原位操作,这是实现大规模CMOS量子光子片上系统的关键组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantum-Correlated Photon-Pair Source with Integrated Feedback Control in 45 nm CMOS
Integrated photonics provides scalability needed for useful photonic quantum information processing. Many optical resonators must be aligned to the same pump wavelength to produce sources of quantum-correlated photon pairs that drive such systems, but existing solutions rely on manual alignment or offline tuning based on external photodiodes and bulky off-chip electronics, limiting scalability. Here we demonstrate feedback control of four-wave mixing (stimulated and spontaneous) in a silicon microring using circuits integrated alongside photonics in a standard 45 nm CMOS foundry process. The carrier-sweepout-generated feedback signal enables in-situ operation in the photon-pair generation regime, which is a key building block enabling large-scale CMOS quantum-photonic systems-on-chip.
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