Programmable quantum circuits in a large-scale photonic waveguide array

IF 6.6 1区 物理与天体物理 Q1 PHYSICS, APPLIED
Yang Yang, Robert J. Chapman, Akram Youssry, Ben Haylock, Francesco Lenzini, Mirko Lobino, Alberto Peruzzo
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引用次数: 0

Abstract

Over the past decade, integrated quantum photonic technologies have shown great potential as a platform for studying quantum phenomena and realizing large-scale quantum information processing. Recently, there have been proposals for utilizing waveguide lattices to implement quantum gates, providing a more compact and robust solution compared to discrete implementation with directional couplers and phase shifters. We report on the first demonstration of precise control of single photon states on an 11-dimensional continuously-coupled programmable waveguide array. Through electro-optical control, the array is subdivided into decoupled subcircuits and the degree of on-chip quantum interference can be tuned with a maximum visibility of 0.962 ± 0.013. Furthermore, we show simultaneous control of two subcircuits on a single device. Our results demonstrate the potential of using this technology as a building block for quantum information processing applications.

Abstract Image

大规模光子波导阵列中的可编程量子电路
近十年来,集成量子光子技术作为研究量子现象和实现大规模量子信息处理的平台显示出巨大的潜力。最近,有人提出利用波导晶格来实现量子门,与使用定向耦合器和移相器的离散实现相比,提供了更紧凑和健壮的解决方案。我们报告了在11维连续耦合可编程波导阵列上精确控制单光子态的首次演示。通过电光控制,将阵列细分为解耦子电路,片上量子干涉程度可调,最大可见性为0.962±0.013。此外,我们展示了在单个设备上同时控制两个子电路。我们的研究结果证明了使用这种技术作为量子信息处理应用的构建块的潜力。
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来源期刊
npj Quantum Information
npj Quantum Information Computer Science-Computer Science (miscellaneous)
CiteScore
13.70
自引率
3.90%
发文量
130
审稿时长
29 weeks
期刊介绍: The scope of npj Quantum Information spans across all relevant disciplines, fields, approaches and levels and so considers outstanding work ranging from fundamental research to applications and technologies.
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