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Main Authors: Wu, Zhi-Hao, Lei, Ling-Xiao, Zhang, Xin-Fang, Xue, Shi-Chuan, Hu, Shun, Li, Cong, Fu, Xiang, Chen, Ping-Xing, Lu, Kai, Deng, Ming-Tang, Wu, Jun-Jie
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2502.05499
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author Wu, Zhi-Hao
Lei, Ling-Xiao
Zhang, Xin-Fang
Xue, Shi-Chuan
Hu, Shun
Li, Cong
Fu, Xiang
Chen, Ping-Xing
Lu, Kai
Deng, Ming-Tang
Wu, Jun-Jie
author_facet Wu, Zhi-Hao
Lei, Ling-Xiao
Zhang, Xin-Fang
Xue, Shi-Chuan
Hu, Shun
Li, Cong
Fu, Xiang
Chen, Ping-Xing
Lu, Kai
Deng, Ming-Tang
Wu, Jun-Jie
contents Ramsey oscillations typically exhibit an exponential decay envelope due to environmental noise. However, recent experiments have observed nonmonotonic Ramsey fringes characterized by beating patterns, which deviate from the standard behavior. These beating patterns have primarily been attributed to charge-noise fluctuations. In this paper, we investigate the flux-noise origin of these nonmonotonic Ramsey fringes in frequency-tunable transmon qubits. We develop a random telegraph noise (RTN) model to simulate the impact of telegraph-like flux-noise sources on Ramsey oscillations. Our simulations demonstrate that strong flux-RTN sources can induce beating patterns in the Ramsey fringes, showing excellent agreement with experimental observations in transmon qubits influenced by electronic environment-induced flux-noise. Our findings provide valuable insights into the role of flux-noise in qubit decoherence and underscore the importance of considering flux-noise RTN when analyzing nonmonotonic Ramsey fringes.
format Preprint
id arxiv_https___arxiv_org_abs_2502_05499
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Telegraph flux noise induced beating Ramsey fringe in transmon qubits
Wu, Zhi-Hao
Lei, Ling-Xiao
Zhang, Xin-Fang
Xue, Shi-Chuan
Hu, Shun
Li, Cong
Fu, Xiang
Chen, Ping-Xing
Lu, Kai
Deng, Ming-Tang
Wu, Jun-Jie
Quantum Physics
Ramsey oscillations typically exhibit an exponential decay envelope due to environmental noise. However, recent experiments have observed nonmonotonic Ramsey fringes characterized by beating patterns, which deviate from the standard behavior. These beating patterns have primarily been attributed to charge-noise fluctuations. In this paper, we investigate the flux-noise origin of these nonmonotonic Ramsey fringes in frequency-tunable transmon qubits. We develop a random telegraph noise (RTN) model to simulate the impact of telegraph-like flux-noise sources on Ramsey oscillations. Our simulations demonstrate that strong flux-RTN sources can induce beating patterns in the Ramsey fringes, showing excellent agreement with experimental observations in transmon qubits influenced by electronic environment-induced flux-noise. Our findings provide valuable insights into the role of flux-noise in qubit decoherence and underscore the importance of considering flux-noise RTN when analyzing nonmonotonic Ramsey fringes.
title Telegraph flux noise induced beating Ramsey fringe in transmon qubits
topic Quantum Physics
url https://arxiv.org/abs/2502.05499