Vibration-assisted multiphoton resonance and multi-ion excitation

We investigate the multiphoton resonance and multi-ion excitation in a single-mode cavity with identical vibrating ionqubits, which enables the tripartite interaction among the internal states of ions, the cavity mode and the ions' vibrational motion. Under particular resonant conditions, we de...

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Main Authors: Wenjun Shao, Xun-Li Feng, Jian Li, Liang-Liang Wang
Format: Article
Language:English
Published: American Physical Society 2023-04-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/PhysRevResearch.5.023005
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author Wenjun Shao
Xun-Li Feng
Jian Li
Liang-Liang Wang
author_facet Wenjun Shao
Xun-Li Feng
Jian Li
Liang-Liang Wang
author_sort Wenjun Shao
collection DOAJ
description We investigate the multiphoton resonance and multi-ion excitation in a single-mode cavity with identical vibrating ionqubits, which enables the tripartite interaction among the internal states of ions, the cavity mode and the ions' vibrational motion. Under particular resonant conditions, we derive effective Hamiltonians for the three-photon and the three-excitation cases, respectively, and find that the magnitude of the effective coupling energy can be tuned through the vibration mode, allowing for manipulations of ion-photon coupling in experiments. Furthermore, we analyze the system dynamics of our proposed setups and demonstrate the Rabi oscillation behaviors in these systems with dissipation effects. We propose our system as a versatile platform for the exploration of entangled multiqubit physics.
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spelling doaj.art-f805bcba18e24dd5a0516e061b0245d22024-04-12T17:29:54ZengAmerican Physical SocietyPhysical Review Research2643-15642023-04-015202300510.1103/PhysRevResearch.5.023005Vibration-assisted multiphoton resonance and multi-ion excitationWenjun ShaoXun-Li FengJian LiLiang-Liang WangWe investigate the multiphoton resonance and multi-ion excitation in a single-mode cavity with identical vibrating ionqubits, which enables the tripartite interaction among the internal states of ions, the cavity mode and the ions' vibrational motion. Under particular resonant conditions, we derive effective Hamiltonians for the three-photon and the three-excitation cases, respectively, and find that the magnitude of the effective coupling energy can be tuned through the vibration mode, allowing for manipulations of ion-photon coupling in experiments. Furthermore, we analyze the system dynamics of our proposed setups and demonstrate the Rabi oscillation behaviors in these systems with dissipation effects. We propose our system as a versatile platform for the exploration of entangled multiqubit physics.http://doi.org/10.1103/PhysRevResearch.5.023005
spellingShingle Wenjun Shao
Xun-Li Feng
Jian Li
Liang-Liang Wang
Vibration-assisted multiphoton resonance and multi-ion excitation
Physical Review Research
title Vibration-assisted multiphoton resonance and multi-ion excitation
title_full Vibration-assisted multiphoton resonance and multi-ion excitation
title_fullStr Vibration-assisted multiphoton resonance and multi-ion excitation
title_full_unstemmed Vibration-assisted multiphoton resonance and multi-ion excitation
title_short Vibration-assisted multiphoton resonance and multi-ion excitation
title_sort vibration assisted multiphoton resonance and multi ion excitation
url http://doi.org/10.1103/PhysRevResearch.5.023005
work_keys_str_mv AT wenjunshao vibrationassistedmultiphotonresonanceandmultiionexcitation
AT xunlifeng vibrationassistedmultiphotonresonanceandmultiionexcitation
AT jianli vibrationassistedmultiphotonresonanceandmultiionexcitation
AT liangliangwang vibrationassistedmultiphotonresonanceandmultiionexcitation