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Main Authors: Cai, Yue, Ma, Kang-Jie, Liu, Jie, Guo, Gang-Feng, Tan, Lei, Liu, Wu-Ming
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2401.01518
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author Cai, Yue
Ma, Kang-Jie
Liu, Jie
Guo, Gang-Feng
Tan, Lei
Liu, Wu-Ming
author_facet Cai, Yue
Ma, Kang-Jie
Liu, Jie
Guo, Gang-Feng
Tan, Lei
Liu, Wu-Ming
contents Optical quantum routers play a crucial role in quantum networks and have been extensively studied in both theory and experiment, leading to significant advancements in their performance. However, these routers impose stringent requirements for achieving desired routing results, as the incident photon frequency must be in strict resonance with one or several specific frequencies. To address this challenge, we propose an efficient quantum router scheme composed of semi-infinite coupled-resonator waveguide (CRW) and a giant atom. The single-channel router scheme enables stable output with 100% transfer rate over the entire energy band of the CRW. Leveraging this intriguing result, we further propose a multi-channel router scheme that possesses high stability and universality, while also being capable of performing various functionalities. The complete physical explanation of the underlying mechanism for this intriguing result is also presented. We hope that quantum router with output results unaffected by the frequency of the incoming information carriers presents a more reliable solution for the implementation of quantum networks.
format Preprint
id arxiv_https___arxiv_org_abs_2401_01518
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Highly Scalable Quantum Router with Frequency-Independent Scattering Spectra
Cai, Yue
Ma, Kang-Jie
Liu, Jie
Guo, Gang-Feng
Tan, Lei
Liu, Wu-Ming
Quantum Physics
Optical quantum routers play a crucial role in quantum networks and have been extensively studied in both theory and experiment, leading to significant advancements in their performance. However, these routers impose stringent requirements for achieving desired routing results, as the incident photon frequency must be in strict resonance with one or several specific frequencies. To address this challenge, we propose an efficient quantum router scheme composed of semi-infinite coupled-resonator waveguide (CRW) and a giant atom. The single-channel router scheme enables stable output with 100% transfer rate over the entire energy band of the CRW. Leveraging this intriguing result, we further propose a multi-channel router scheme that possesses high stability and universality, while also being capable of performing various functionalities. The complete physical explanation of the underlying mechanism for this intriguing result is also presented. We hope that quantum router with output results unaffected by the frequency of the incoming information carriers presents a more reliable solution for the implementation of quantum networks.
title Highly Scalable Quantum Router with Frequency-Independent Scattering Spectra
topic Quantum Physics
url https://arxiv.org/abs/2401.01518