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20162022
most citedExceptional Point and Cross-Relaxation Effect in a Hybrid Quantum System

76 citations · 102 across the 3 of their papers we have counts for

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6 papers · 1 filter

quant-ph20221 cited

Hybridized Frequency Combs in Multimode Cavity Electromechanical System

Sishi Wu, Yulong Liu, Qichun Liu +3

The cavity electromechanical devices with radiation-pressure-interaction induced Kerr-like nonlinearity are promising candidates to generate microwave frequency combs. We construct…

quant-ph2021

Parity-symmetry-breaking quantum phase transition via parametric drive in a cavity magnonic system

Guo-Qiang Zhang, Zhen Chen, Wei Xiong +2

We study the parity-symmetry-breaking quantum phase transition (QPT) in a cavity magnonic system driven by a parametric field, where the magnons in a ferrimagnetic yttrium-iron-gar…

quant-ph202176 cited

Exceptional Point and Cross-Relaxation Effect in a Hybrid Quantum System

Guo-Qiang Zhang, Zhen Chen, Da Xu +7

Exceptional points (EPs) are exotic degeneracies of non-Hermitian systems, where the eigenvalues and the corresponding eigenvectors simultaneously coalesce in parameter space, and…

quant-ph202025 cited

Photon-Dressed Bloch-Siegert Shift in an Ultrastrongly Coupled Circuit Quantum Electrodynamical System

Shuai-Peng Wang, Guo-Qiang Zhang, Yimin Wang +5

A cavity quantum electrodynamical (QED) system beyond the strong-coupling regime is expected to exhibit intriguing quantum phenomena. Here we report a direct measurement of the pho…

quant-ph2020

Experimentally Accessible Quantum Phase Transition in a non-Hermitian Tavis-Cummings Model Engineered with Two Drive Fields

Guo-Qiang Zhang, Zhen Chen, J. Q. You

We study the quantum phase transition (QPT) in a non-Hermitian Tavis-Cummings (TC) model of experimentally accessible parameters, which is engineered with two drive fields applied…

quant-ph2016

Method for identifying electromagnetically induced transparency in a tunable circuit quantum electrodynamics system

Qi-Chun Liu, Tie-Fu Li, Xiao-Qing Luo +9

Electromagnetically induced transparency (EIT) has been realized in atomic systems, but fulfilling the EIT conditions for artificial atoms made from superconducting circuits is a m…