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基于系综的光学存储器中量子水平的相干自旋控制。

Coherent Spin Control at the Quantum Level in an Ensemble-Based Optical Memory.

作者信息

Jobez Pierre, Laplane Cyril, Timoney Nuala, Gisin Nicolas, Ferrier Alban, Goldner Philippe, Afzelius Mikael

机构信息

Group of Applied Physics, University of Geneva, CH-1211 Geneva 4, Switzerland.

PSL Research University, Chimie ParisTech CNRS, Institut de Recherche de Chimie Paris, 75005 Paris, France.

出版信息

Phys Rev Lett. 2015 Jun 12;114(23):230502. doi: 10.1103/PhysRevLett.114.230502.

Abstract

Long-lived quantum memories are essential components of a long-standing goal of remote distribution of entanglement in quantum networks. These can be realized by storing the quantum states of light as single-spin excitations in atomic ensembles. However, spin states are often subjected to different dephasing processes that limit the storage time, which in principle could be overcome using spin-echo techniques. Theoretical studies suggest this to be challenging due to unavoidable spontaneous emission noise in ensemble-based quantum memories. Here, we demonstrate spin-echo manipulation of a mean spin excitation of 1 in a large solid-state ensemble, generated through storage of a weak optical pulse. After a storage time of about 1 ms we optically read-out the spin excitation with a high signal-to-noise ratio. Our results pave the way for long-duration optical quantum storage using spin-echo techniques for any ensemble-based memory.

摘要

长寿命量子存储器是量子网络中实现纠缠远程分发这一长期目标的关键组件。这可以通过将光的量子态存储为原子系综中的单自旋激发来实现。然而,自旋态常常会经历不同的退相过程,这些过程限制了存储时间,原则上可以使用自旋回波技术来克服。理论研究表明,由于基于系综的量子存储器中不可避免的自发辐射噪声,这具有挑战性。在此,我们展示了对通过存储弱光脉冲在大型固态系综中产生的平均自旋激发进行自旋回波操控。在约1毫秒的存储时间后,我们以高信噪比光学读出自旋激发。我们的结果为使用自旋回波技术对任何基于系综的存储器进行长时间光量子存储铺平了道路。

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