Observation of multiple steady states with engineered dissipation

Fuente: arXiv
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Hauptverfasser: Li, Li, Liu, Tong, Guo, Xue-Yi, Zhang, He, Zhao, Silu, Xiang, Zhongcheng, Song, Xiaohui, Zhang, Yu-Xiang, Xu, Kai, Fan, Heng, Zheng, Dongning
Format: Preprint
Veröffentlicht: 2023
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author Li, Li
Liu, Tong
Guo, Xue-Yi
Zhang, He
Zhao, Silu
Xiang, Zhongcheng
Song, Xiaohui
Zhang, Yu-Xiang
Xu, Kai
Fan, Heng
Zheng, Dongning
author_facet Li, Li
Liu, Tong
Guo, Xue-Yi
Zhang, He
Zhao, Silu
Xiang, Zhongcheng
Song, Xiaohui
Zhang, Yu-Xiang
Xu, Kai
Fan, Heng
Zheng, Dongning
contents Simulating the dynamics of open quantum systems is essential in achieving practical quantum computation and understanding novel nonequilibrium behaviors. However, quantum simulation of a many-body system coupled to an engineered reservoir has yet to be fully explored in present-day experiment platforms. In this work, we introduce engineered noise into a one-dimensional ten-qubit superconducting quantum processor to emulate a generic many-body open quantum system. Our approach originates from the stochastic unravellings of the master equation. By measuring the end-to-end correlation, we identify multiple steady states stemmed from a strong symmetry, which is established on the modified Hamiltonian via Floquet engineering. Furthermore, we find that the information saved in the initial state maintains in the steady state driven by the continuous dissipation on a five-qubit chain. Our work provides a manageable and hardware-efficient strategy for the open-system quantum simulation.
format Preprint
id arxiv_https___arxiv_org_abs_2308_13235
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Observation of multiple steady states with engineered dissipation
Li, Li
Liu, Tong
Guo, Xue-Yi
Zhang, He
Zhao, Silu
Xiang, Zhongcheng
Song, Xiaohui
Zhang, Yu-Xiang
Xu, Kai
Fan, Heng
Zheng, Dongning
Quantum Physics
Simulating the dynamics of open quantum systems is essential in achieving practical quantum computation and understanding novel nonequilibrium behaviors. However, quantum simulation of a many-body system coupled to an engineered reservoir has yet to be fully explored in present-day experiment platforms. In this work, we introduce engineered noise into a one-dimensional ten-qubit superconducting quantum processor to emulate a generic many-body open quantum system. Our approach originates from the stochastic unravellings of the master equation. By measuring the end-to-end correlation, we identify multiple steady states stemmed from a strong symmetry, which is established on the modified Hamiltonian via Floquet engineering. Furthermore, we find that the information saved in the initial state maintains in the steady state driven by the continuous dissipation on a five-qubit chain. Our work provides a manageable and hardware-efficient strategy for the open-system quantum simulation.
title Observation of multiple steady states with engineered dissipation
topic Quantum Physics
url https://arxiv.org/abs/2308.13235