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嵌入等离子体波导中的分离氮空位中心之间的量子关联动力学

Dynamics of quantum correlation between separated nitrogen-vacancy centers embedded in plasmonic waveguide.

作者信息

Yang Wan-li, An Jun-Hong, Zhang Cheng-jie, Chen Chang-yong, Oh C H

机构信息

State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071, China.

Centre for Quantum Technologies, National University of Singapore, Singapore 117543, Singapore.

出版信息

Sci Rep. 2015 Oct 23;5:15513. doi: 10.1038/srep15513.

Abstract

We investigate the dynamics of quantum correlation between two separated nitrogen vacancy centers (NVCs) placed near a one-dimensional plasmonic waveguide. As a common medium of the radiation field of NVCs propagating, the plasmonic waveguide can dynamically induce quantum correlation between the two NVCs. It is interesting to find that such dynamically induced quantum correlation can be preserved in the long-time steady state by locally applying individual driving on the two NVCs. In particular, we also show that a large degree of quantum correlation can be established by this scheme even when the distance between the NVCs is much larger than their operating wavelength. This feature may open new perspectives for devising active decoherence-immune solid-state optical devices and long-distance NVC-based quantum networks in the context of plasmonic quantum electrodynamics.

摘要

我们研究了位于一维等离子体波导附近的两个分离的氮空位中心(NVC)之间的量子关联动力学。作为NVC辐射场传播的常见介质,等离子体波导可以动态地诱导两个NVC之间的量子关联。有趣的是,通过在两个NVC上局部施加单独的驱动,这种动态诱导的量子关联可以在长时间稳态中得以保留。特别地,我们还表明,即使NVC之间的距离远大于其工作波长,通过该方案也可以建立高度的量子关联。这一特性可能为在等离子体量子电动力学背景下设计有源退相干免疫固态光学器件和基于NVC的长距离量子网络开辟新的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6afe/4616030/98aa7556cf7e/srep15513-f1.jpg

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