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Floquet Engineering of Anisotropic Transverse Interactions in Superconducting Qubits

Authors :
Liang, Yongqi
Huang, Wenhui
Zhang, Libo
Tao, Ziyu
Tang, Kai
Chu, Ji
Qiu, Jiawei
Sun, Xuandong
Zhou, Yuxuan
Zhang, Jiawei
Zhang, Jiajian
Guo, Weijie
Liu, Yang
Chen, Yuanzhen
Liu, Song
Zhong, Youpeng
Niu, Jingjing
Yu, Dapeng
Publication Year :
2024

Abstract

Superconducting transmon qubits have established as a leading candidate for quantum computation, as well as a flexible platform for exploring exotic quantum phases and dynamics. However, physical coupling naturally yields isotropic transverse interactions between qubits, restricting their access to diverse quantum phases that require spatially dependent interactions. Here, we demonstrate the simultaneous realization of both pairing (XX-YY) and hopping (XX+YY) interactions between transmon qubits by Floquet engineering. The coherent superposition of these interactions enables independent control over the XX and YY terms, yielding anisotropic transverse interactions. By aligning the transverse interactions along a 1D chain of six qubits, as calibrated via Aharonov-Bohm interference in synthetic space, we synthesize a transverse field Ising chain model and explore its dynamical phase transition under varying external field. The scalable synthesis of anisotropic transverse interactions paves the way for the implementation of more complex physical systems requiring spatially dependent interactions, enriching the toolbox for engineering quantum phases with superconducting qubits.<br />Comment: 7+14 pages; 4+12 figures

Subjects

Subjects :
Quantum Physics

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2410.10208
Document Type :
Working Paper