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硅中单个电子与微波光子的强耦合。

Strong coupling of a single electron in silicon to a microwave photon.

机构信息

Department of Physics, Princeton University, Princeton, NJ 08544, USA.

HRL Laboratories LLC, 3011 Malibu Canyon Road, Malibu, CA 90265, USA.

出版信息

Science. 2017 Jan 13;355(6321):156-158. doi: 10.1126/science.aal2469. Epub 2016 Dec 22.

Abstract

Silicon is vital to the computing industry because of the high quality of its native oxide and well-established doping technologies. Isotopic purification has enabled quantum coherence times on the order of seconds, thereby placing silicon at the forefront of efforts to create a solid-state quantum processor. We demonstrate strong coupling of a single electron in a silicon double quantum dot to the photonic field of a microwave cavity, as shown by the observation of vacuum Rabi splitting. Strong coupling of a quantum dot electron to a cavity photon would allow for long-range qubit coupling and the long-range entanglement of electrons in semiconductor quantum dots.

摘要

硅因其高质量的本征氧化物和成熟的掺杂技术对计算行业至关重要。同位素纯化使量子相干时间达到秒级,从而使硅成为制造固态量子处理器的前沿领域。我们通过观察真空拉比分裂,证明了硅双量子点中的单个电子与微波腔的光子场的强耦合。量子点电子与腔光子的强耦合将允许远距离量子比特耦合和半导体量子点中电子的远距离纠缠。

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