论文标题

在非理想手性光子原子相互作用下单个光子的单向传输

Unidirectional transmission of single photons under non-ideal chiral photon-atom interactions

论文作者

Yan, Cong-Hua, Li, Ming, Xu, Xin-Biao, Zhang, Yan-Lei, Yuan, Hao, Zou, Chang-Ling

论文摘要

在非理想的手性光子原子交互结构中,单光子传输通常包含信息回流,因此限制了能力在级联量子网络中远处发射器之间传输信息。在这里,在非理想的手性情况下,提出了与波导耦合的V型原子,以在不同频率的叠加状态下实现单个光子的完全单向传递。引入了一个微波场,以驱动原子的两个激发态,并导致两个过渡之间的光子转换。通过调整RABI频率和外部驾驶场的相位,可以优化具有特定频率的入射光子的传输行为以完成传输或反射。根据来自不同行进路径的光子之间的建设性干扰,可以增强特定频率光子的传输概率。由于光子转换和补偿耗散并确保完整的破坏性干扰,因此即使原子在非波导指导模式中耗散,理想的单向传输对比度也可以保持在1。

Single-photon transport in non-ideal chiral photon-atom interaction structures generally contains information backflow and thus limits the capabilities to transfer information between distant emitters in cascaded quantum networks. Here, in the non-ideal chiral case, a V -type atom coupled to a waveguide is proposed to realize completely unidirectional transmission of the single photons in a superposition state of different frequencies. A microwave field is introduced to drive the two excited states of the atom and results in photon conversion between two transitions. By adjusting the Rabi frequency and the phase of the external driving field, the transport behaviors of incident photons with specific frequencies can be optimized to complete transmission or reflection. Based on the constructive interferences between photons from different traveling paths, the transmission probabilities of the specific-frequency photons could be enhanced. Due to photon conversions with compensating the dissipations and ensuring the complete destructive interference, the ideal unidirectional transmission contrast can be maintained to 1, even when the atom has dissipations into the non-waveguide modes.

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