Nonreciprocal routing induced by chirality in an atom-dimer waveguide-QED system

Fuente: arXiv
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Auteurs principaux: Liu, Shi-Yu, Jiang, Lin-Lin, Zhu, Hai, Liao, Jie-Qiao, Huang, Jin-Feng
Format: Preprint
Publié: 2025
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author Liu, Shi-Yu
Jiang, Lin-Lin
Zhu, Hai
Liao, Jie-Qiao
Huang, Jin-Feng
author_facet Liu, Shi-Yu
Jiang, Lin-Lin
Zhu, Hai
Liao, Jie-Qiao
Huang, Jin-Feng
contents The implementation of quantum routers is an important and desired task in quantum information science, since quantum routers are important components of quantum networks. Here, we propose a scheme for implementing single-photon routers in a waveguide-QED system, which consists of two coupled two-level atoms coupled to two waveguides to form a four-port quantum device. We obtain the exact analytical expressions of the single-photon scattering amplitudes using the real-space method. By taking the propagating time of photons between two coupling points into account or not, we consider the system working in the Markovian and non-Markovian regimes, respectively. In addition, we introduce the chiral coupling, which breaks the symmetry of the waveguide model, to manipulate the transmission of single photons. We find that when the system works in the non-Markovian regime, the single photon can be transmitted on demand by adjusting the asymmetry coefficient. More interestingly, the complete single-photon routing in this device does not require an ideal chiral coupling, loosening the photon transport conditions. This work will motivate the studies concerning the nonreciprocal and chiral quantum devices in the waveguide-QED platform.
format Preprint
id arxiv_https___arxiv_org_abs_2502_10121
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Nonreciprocal routing induced by chirality in an atom-dimer waveguide-QED system
Liu, Shi-Yu
Jiang, Lin-Lin
Zhu, Hai
Liao, Jie-Qiao
Huang, Jin-Feng
Quantum Physics
The implementation of quantum routers is an important and desired task in quantum information science, since quantum routers are important components of quantum networks. Here, we propose a scheme for implementing single-photon routers in a waveguide-QED system, which consists of two coupled two-level atoms coupled to two waveguides to form a four-port quantum device. We obtain the exact analytical expressions of the single-photon scattering amplitudes using the real-space method. By taking the propagating time of photons between two coupling points into account or not, we consider the system working in the Markovian and non-Markovian regimes, respectively. In addition, we introduce the chiral coupling, which breaks the symmetry of the waveguide model, to manipulate the transmission of single photons. We find that when the system works in the non-Markovian regime, the single photon can be transmitted on demand by adjusting the asymmetry coefficient. More interestingly, the complete single-photon routing in this device does not require an ideal chiral coupling, loosening the photon transport conditions. This work will motivate the studies concerning the nonreciprocal and chiral quantum devices in the waveguide-QED platform.
title Nonreciprocal routing induced by chirality in an atom-dimer waveguide-QED system
topic Quantum Physics
url https://arxiv.org/abs/2502.10121