物理
光子
光子学
谐振器
循环器
波导管
光子晶体
光电子学
光学
凝聚态物理
作者
Jiang-Shan Tang,Wei Nie,Lei Tang,Mingyuan Chen,Xin Su,Yanqing Lu,Franco Nori,Keyu Xia
标识
DOI:10.1103/physrevlett.128.203602
摘要
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.
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