Generation and Coherent Control of Dark-State Spatial Modes

Fuente: arXiv
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Autori principali: Shia, Huai-Che, Shao, Siang-Wei, Chiang, Wu-Cheng, Kuan, Yu-Hung, Liu, I-Kang, Kirova, Teodora, Juzeliūnas, Gediminas, Lin, Yu-Ju, Liao, Wen-Te
Natura: Preprint
Pubblicazione: 2025
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author Shia, Huai-Che
Shao, Siang-Wei
Chiang, Wu-Cheng
Kuan, Yu-Hung
Liu, I-Kang
Kirova, Teodora
Juzeliūnas, Gediminas
Lin, Yu-Ju
Liao, Wen-Te
author_facet Shia, Huai-Che
Shao, Siang-Wei
Chiang, Wu-Cheng
Kuan, Yu-Hung
Liu, I-Kang
Kirova, Teodora
Juzeliūnas, Gediminas
Lin, Yu-Ju
Liao, Wen-Te
contents The generation and dynamic control of the spatial mode of the dark-state polarization using electromagnetically induced transparency are theoretically investigated. We demonstrate that a combination of synthetic scalar and vector potentials can be employed to engineer discrete spatial modes of the dark state polariton, enabling quantum interference among these modes. We verify this concept by showing the Rabi oscillation between two spatial modes and stimulated Raman adiabatic passage among $Λ$-type three modes. Our approach allows for the reallocation of stored photonic data from one location to another, presenting potential applications such as photonic memory optimization and retrieved light modulation.
format Preprint
id arxiv_https___arxiv_org_abs_2507_00558
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Generation and Coherent Control of Dark-State Spatial Modes
Shia, Huai-Che
Shao, Siang-Wei
Chiang, Wu-Cheng
Kuan, Yu-Hung
Liu, I-Kang
Kirova, Teodora
Juzeliūnas, Gediminas
Lin, Yu-Ju
Liao, Wen-Te
Quantum Physics
The generation and dynamic control of the spatial mode of the dark-state polarization using electromagnetically induced transparency are theoretically investigated. We demonstrate that a combination of synthetic scalar and vector potentials can be employed to engineer discrete spatial modes of the dark state polariton, enabling quantum interference among these modes. We verify this concept by showing the Rabi oscillation between two spatial modes and stimulated Raman adiabatic passage among $Λ$-type three modes. Our approach allows for the reallocation of stored photonic data from one location to another, presenting potential applications such as photonic memory optimization and retrieved light modulation.
title Generation and Coherent Control of Dark-State Spatial Modes
topic Quantum Physics
url https://arxiv.org/abs/2507.00558