论文标题
巨型原子的非肾脏和手性单光子散射
Nonreciprocal and chiral single-photon scattering for giant atoms
论文作者
论文摘要
带有巨大原子的量子光学器件为研究光子散射提供了新的范式。在这项工作中,我们研究了巨大原子的非平凡单光子散射特性,是实现非代额和手性量子光学的有效平台。对于两级巨型原子,我们确定了非偏射传播的条件:除了通过局部耦合阶段破坏时间反转对称性外,还需要外部原子耗散。尤其是在非马克维亚政权中,非常规复兴峰在反射范围中定期出现。为了探索更有趣的散射行为,我们将两级巨型原子系统扩展到δ型,{\ nabla} -Type三级巨型原子与具有不同物理机制的双波导耦合,以实现非逆向和脊椎散射。我们提出的巨型原子结构具有高效目标路由器的潜在应用,可以将单个光子运输到确定性的任何所需端口,并可以以环状方式在四个端口之间运输单个光子。
Quantum optics with giant atoms has provided a new paradigm to study photon scatterings. In this work, we investigate the nontrivial single-photon scattering properties of giant atoms being an effective platform to realize nonreciprocal and chiral quantum optics. For two-level giant atoms, we identify the condition for nonreciprocal transmission: the external atomic dissipation is further required other than the breaking of time-reversal symmetry by local coupling phases. Especially, in the non-Markovian regime, unconventional revival peaks periodically appear in the reflection spectrum. To explore more interesting scattering behaviors, we extend the two-level giant-atom system to Δ-type and {\nabla}-type three-level giant atoms coupled to double waveguides with different physical mechanisms to realize nonreciprocal and chiral scatterings. Our proposed giant-atom structures have potential applications of high-efficiency targeted routers that can transport single photons to any desired port deterministically and circulators that can transport single photons between four ports in a cyclic way.