Fast quantum state transfer and entanglement preparation in strongly coupled bosonic systems

Fuente: arXiv
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Autores principales: Xu, Yilun, Zhu, Daoquan, Sun, Feng-Xiao, He, Qiongyi, Zhang, Wei
Formato: Preprint
Publicado: 2023
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author Xu, Yilun
Zhu, Daoquan
Sun, Feng-Xiao
He, Qiongyi
Zhang, Wei
author_facet Xu, Yilun
Zhu, Daoquan
Sun, Feng-Xiao
He, Qiongyi
Zhang, Wei
contents Continuous U(1) gauge symmetry, which guarantees the conservation of the total excitations in linear bosonic systems, will be broken when it comes to the strong-coupling regime where the rotation wave approximation (RWA) fails. Here we develop analytic solutions for multi-mode bosonic systems with XX-type couplings beyond RWA, and proposed a novel scheme to implement high-fidelity quantum state transfer (QST) and entanglement preparation (EP) with high speed. The scheme can be realized with designated coupling strength and pulse duration with which the excitation number keeps unchanged regardless of the breakdown of the global U(1) symmetry. In the QST tasks, we consider several typical quantum states and demonstrate that this method is robust against thermal noise and imperfections of experimental sequence. In the EP tasks, the scheme is successfully implemented for the preparation of Bell states and W-type states, within a shortest preparation time.
format Preprint
id arxiv_https___arxiv_org_abs_2308_05511
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Fast quantum state transfer and entanglement preparation in strongly coupled bosonic systems
Xu, Yilun
Zhu, Daoquan
Sun, Feng-Xiao
He, Qiongyi
Zhang, Wei
Quantum Physics
Continuous U(1) gauge symmetry, which guarantees the conservation of the total excitations in linear bosonic systems, will be broken when it comes to the strong-coupling regime where the rotation wave approximation (RWA) fails. Here we develop analytic solutions for multi-mode bosonic systems with XX-type couplings beyond RWA, and proposed a novel scheme to implement high-fidelity quantum state transfer (QST) and entanglement preparation (EP) with high speed. The scheme can be realized with designated coupling strength and pulse duration with which the excitation number keeps unchanged regardless of the breakdown of the global U(1) symmetry. In the QST tasks, we consider several typical quantum states and demonstrate that this method is robust against thermal noise and imperfections of experimental sequence. In the EP tasks, the scheme is successfully implemented for the preparation of Bell states and W-type states, within a shortest preparation time.
title Fast quantum state transfer and entanglement preparation in strongly coupled bosonic systems
topic Quantum Physics
url https://arxiv.org/abs/2308.05511