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非互易单光子能带结构

Nonreciprocal Single-Photon Band Structure.

作者信息

Tang Jiang-Shan, Nie Wei, Tang Lei, Chen Mingyuan, Su Xin, Lu Yanqing, Nori Franco, Xia Keyu

机构信息

College of Engineering and Applied Sciences, National Laboratory of Solid State Microstructures, and Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing 210023, China.

School of Physics, Nanjing University, Nanjing 210023, China.

出版信息

Phys Rev Lett. 2022 May 20;128(20):203602. doi: 10.1103/PhysRevLett.128.203602.

Abstract

We study a single-photon band structure in a one-dimensional coupled-resonator optical waveguide that chirally couples to an array of two-level quantum emitters (QEs). The chiral interaction between the resonator mode and the QE can break the time-reversal symmetry without the magneto-optical effect and an external or synthetic magnetic field. As a result, nonreciprocal single-photon edge states, band gaps, and flat bands appear. By using such a chiral QE coupled-resonator optical waveguide system, including a finite number of unit cells and working in the nonreciprocal band gap, we achieve frequency-multiplexed single-photon circulators with high fidelity and low insertion loss. The chiral QE-light interaction can also protect one-way propagation of single photons against backscattering. Our work opens a new door for studying unconventional photonic band structures without electronic counterparts in condensed matter and exploring its applications in the quantum regime.

摘要

我们研究了一种一维耦合谐振器光波导中的单光子能带结构,该光波导与一个两能级量子发射器(QE)阵列进行手性耦合。谐振器模式与量子发射器之间的手性相互作用可以在没有磁光效应以及外部或合成磁场的情况下打破时间反演对称性。结果,出现了非互易单光子边缘态、带隙和平带。通过使用这样一种包含有限数量单元并在非互易带隙中工作的手性量子发射器耦合谐振器光波导系统,我们实现了具有高保真度和低插入损耗的频率复用单光子环行器。手性量子发射器与光的相互作用还可以保护单光子的单向传播免受背散射影响。我们的工作为研究凝聚态物质中无电子对应物的非常规光子能带结构及其在量子领域的应用打开了一扇新的大门。

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