Saved in:
Bibliographic Details
Main Authors: Li, Li, Ruan, Xinhui, Zhao, Si-Lu, Chen, Bing-Jie, Liang, Gui-Han, Liu, Yu, Deng, Cheng-Lin, Yuan, Wei-Ping, Song, Jia-Cheng, Liu, Zheng-He, Li, Tian-Ming, Shi, Yun-Hao, Zhang, He, Han, Ming, Guo, Jin-Ming, Guo, Xue-Yi, Song, Xiaohui, Zhao, Qianchuan, Zhang, Jing, Song, Pengtao, Xu, Kai, Fan, Heng, Liu, Yu-Xi, Peng, Zhihui, Xiang, Zhongcheng, Zheng, Dongning
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2505.05127
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866918262365749248
author Li, Li
Ruan, Xinhui
Zhao, Si-Lu
Chen, Bing-Jie
Liang, Gui-Han
Liu, Yu
Deng, Cheng-Lin
Yuan, Wei-Ping
Song, Jia-Cheng
Liu, Zheng-He
Li, Tian-Ming
Shi, Yun-Hao
Zhang, He
Han, Ming
Guo, Jin-Ming
Guo, Xue-Yi
Song, Xiaohui
Zhao, Qianchuan
Zhang, Jing
Song, Pengtao
Xu, Kai
Fan, Heng
Liu, Yu-Xi
Peng, Zhihui
Xiang, Zhongcheng
Zheng, Dongning
author_facet Li, Li
Ruan, Xinhui
Zhao, Si-Lu
Chen, Bing-Jie
Liang, Gui-Han
Liu, Yu
Deng, Cheng-Lin
Yuan, Wei-Ping
Song, Jia-Cheng
Liu, Zheng-He
Li, Tian-Ming
Shi, Yun-Hao
Zhang, He
Han, Ming
Guo, Jin-Ming
Guo, Xue-Yi
Song, Xiaohui
Zhao, Qianchuan
Zhang, Jing
Song, Pengtao
Xu, Kai
Fan, Heng
Liu, Yu-Xi
Peng, Zhihui
Xiang, Zhongcheng
Zheng, Dongning
contents Hybrid mechanical-superconducting systems for quantum information processing have attracted significant attention due to their potential applications. In such systems, the weak coupling regime, dominated by dissipation, has been extensively studied. The strong coupling regime, where coherent energy exchange exceeds losses, has also been widely explored. However, the transition-coupling regime, which lies between the above two and exhibits rich, unique physics, remains underexplored. In this study, we fabricate a tunable coupling device to investigate the coupling of a superconducting transmon qubit to a seven-mode surface acoustic wave resonator (SAWR), with a particular focus on the transition-coupling regime. Through a series of phonon oscillation experiments and studies in the dispersive regime, we systematically characterize the performance of the SAWR. We then explore the complex dynamics of energy exchange between the qubit and the mechanical modes, highlighting the interplay between dissipation and coherence. Finally, we propose a protocol for qubit readout and fast reset with a multimode mechanical cavity using one mode for readout and another mode for reset. We have demonstrated in simulation that the qubit achieves both fast reset and high coherence performance when the qubit is coupled to the reset mode in the transition-coupling regime.
format Preprint
id arxiv_https___arxiv_org_abs_2505_05127
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantum Acoustics with Superconducting Qubits in the Multimode Transition-Coupling Regime
Li, Li
Ruan, Xinhui
Zhao, Si-Lu
Chen, Bing-Jie
Liang, Gui-Han
Liu, Yu
Deng, Cheng-Lin
Yuan, Wei-Ping
Song, Jia-Cheng
Liu, Zheng-He
Li, Tian-Ming
Shi, Yun-Hao
Zhang, He
Han, Ming
Guo, Jin-Ming
Guo, Xue-Yi
Song, Xiaohui
Zhao, Qianchuan
Zhang, Jing
Song, Pengtao
Xu, Kai
Fan, Heng
Liu, Yu-Xi
Peng, Zhihui
Xiang, Zhongcheng
Zheng, Dongning
Quantum Physics
Hybrid mechanical-superconducting systems for quantum information processing have attracted significant attention due to their potential applications. In such systems, the weak coupling regime, dominated by dissipation, has been extensively studied. The strong coupling regime, where coherent energy exchange exceeds losses, has also been widely explored. However, the transition-coupling regime, which lies between the above two and exhibits rich, unique physics, remains underexplored. In this study, we fabricate a tunable coupling device to investigate the coupling of a superconducting transmon qubit to a seven-mode surface acoustic wave resonator (SAWR), with a particular focus on the transition-coupling regime. Through a series of phonon oscillation experiments and studies in the dispersive regime, we systematically characterize the performance of the SAWR. We then explore the complex dynamics of energy exchange between the qubit and the mechanical modes, highlighting the interplay between dissipation and coherence. Finally, we propose a protocol for qubit readout and fast reset with a multimode mechanical cavity using one mode for readout and another mode for reset. We have demonstrated in simulation that the qubit achieves both fast reset and high coherence performance when the qubit is coupled to the reset mode in the transition-coupling regime.
title Quantum Acoustics with Superconducting Qubits in the Multimode Transition-Coupling Regime
topic Quantum Physics
url https://arxiv.org/abs/2505.05127