Absence of Correlations in Dissipative Interacting Qubits: a No-Go Theorem

Fuente: arXiv
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Autori principali: Wang, Zeqing, Qi, Ran, Lu, Yao, Wu, Zhigang, Jie, Jianwen
Natura: Preprint
Pubblicazione: 2023
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author Wang, Zeqing
Qi, Ran
Lu, Yao
Wu, Zhigang
Jie, Jianwen
author_facet Wang, Zeqing
Qi, Ran
Lu, Yao
Wu, Zhigang
Jie, Jianwen
contents Exact solutions of model problems are elusive but potent tools for understanding many body interacting systems. We study a system of dissipative qubits with the Heisenberg interaction and obtain, for qubits under a certain condition, an exact steady state solution to the Lindblad master equation describing its dynamics. The physical content of such a solution is a remarkable no-go theorem, which states that for qubits possessing identical ratios of the damping and gain rates, no correlation can be established between them in the steady state. Two consequences of this theorem are discussed in the context of quantum synchronization of qubits. The first is a complete blockade of quantum synchronization of qubits under the aforementioned condition, an effect reminiscent of, but having a much broader scope than, that found in dissipated Kerr-anharmonic oscillators. The second, and a more important consequence is the possibility of reducing a complex all-to-all qubit network to a much simpler one-to-all network by engineering the dissipation. Such a reduction is desired because it provides an effective tool to optimize the quantum synchronization of a complex qubit network. Finally, we propose two concrete experimental schemes to implement our model and to test our predictions.
format Preprint
id arxiv_https___arxiv_org_abs_2302_00976
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Absence of Correlations in Dissipative Interacting Qubits: a No-Go Theorem
Wang, Zeqing
Qi, Ran
Lu, Yao
Wu, Zhigang
Jie, Jianwen
Quantum Physics
Other Condensed Matter
Quantum Gases
Exact solutions of model problems are elusive but potent tools for understanding many body interacting systems. We study a system of dissipative qubits with the Heisenberg interaction and obtain, for qubits under a certain condition, an exact steady state solution to the Lindblad master equation describing its dynamics. The physical content of such a solution is a remarkable no-go theorem, which states that for qubits possessing identical ratios of the damping and gain rates, no correlation can be established between them in the steady state. Two consequences of this theorem are discussed in the context of quantum synchronization of qubits. The first is a complete blockade of quantum synchronization of qubits under the aforementioned condition, an effect reminiscent of, but having a much broader scope than, that found in dissipated Kerr-anharmonic oscillators. The second, and a more important consequence is the possibility of reducing a complex all-to-all qubit network to a much simpler one-to-all network by engineering the dissipation. Such a reduction is desired because it provides an effective tool to optimize the quantum synchronization of a complex qubit network. Finally, we propose two concrete experimental schemes to implement our model and to test our predictions.
title Absence of Correlations in Dissipative Interacting Qubits: a No-Go Theorem
topic Quantum Physics
Other Condensed Matter
Quantum Gases
url https://arxiv.org/abs/2302.00976