Noise-induced quantum synchronization with entangled oscillations

Z Ziyu Tao F Finn Schmolke C Chang-Kang Hu W Wenhui Huang Y Yuxuan Zhou J Jiawei Zhang J Ji Chu L Libo Zhang (Department of Chemistry, University of California, One Shields Avenue, Davis, California 95616, United States) X Xuandong Sun Z Zechen Guo J Jingjing Niu W Wenle Weng S Song Liu Y Youpeng Zhong D Dian Tan D Dapeng Yu E Eric Lutz

Abstract

Abstract Random fluctuations can lead to cooperative effects in complex systems. We here report the observation of noise-induced quantum synchronization in a chain of superconducting transmon qubits with nearest-neighbor interactions. The application of Gaussian white noise to a single site leads to synchronous oscillations in the entire chain. We show that the two synchronized end qubits are entangled, with nonzero concurrence, and that they belong to a class of generalized Bell states known as maximally entangled mixed states, whose entanglement cannot be increased by any global unitary. We further demonstrate the stability against frequency detuning of both synchronization and entanglement by determining the corresponding generalized Arnold tongue diagrams. Our results highlight the constructive influence of noise in a quantum many-body system, and initiate the exploration of collective synchronization effects with stronger than classical correlations.

Article Details

Volume / Issue Vol. 16, Issue 1
Published September 26, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

Z

Ziyu Tao

F

Finn Schmolke

C

Chang-Kang Hu

W

Wenhui Huang

Y

Yuxuan Zhou

J

Jiawei Zhang

J

Ji Chu

L

Libo Zhang

Department of Chemistry, University of California, One Shields Avenue, Davis, California 95616, United States

X

Xuandong Sun

Z

Zechen Guo

J

Jingjing Niu

W

Wenle Weng

S

Song Liu

Y

Youpeng Zhong

D

Dian Tan

D

Dapeng Yu

E

Eric Lutz