物理
介观物理学
非经典光
腔量子电动力学
量子相变
量子力学
叠加原理
量子纠缠
量子计量学
量子光学
量子
量子位元
耗散系统
量子退相干
量子技术
量子态
开放量子系统
量子网络
作者
Ri‐Hua Zheng,Wen Ning,Ye‐Hong Chen,Jiahao Lu,Li-Tuo Shen,Kai Xu,Yu-Ran Zhang,Da Xu,Hekang Li,Yan Xia,Fan Wu,Zhen‐Biao Yang,Adam Miranowicz,Neill Lambert,Dongning Zheng,Heng Fan,Franco Nori,Shi‐Biao Zheng
标识
DOI:10.1103/physrevlett.131.113601
摘要
Superradiant phase transitions (SPTs) are important for understanding light-matter interactions at the quantum level, and play a central role in criticality-enhanced quantum sensing. So far, SPTs have been observed in driven-dissipative systems, but the emergent light fields did not show any nonclassical characteristic due to the presence of strong dissipation. Here we report an experimental demonstration of the SPT featuring the emergence of a highly nonclassical photonic field, realized with a resonator coupled to a superconducting qubit, implementing the quantum Rabi model. We fully characterize the light-matter state by Wigner matrix tomography. The measured matrix elements exhibit quantum interference intrinsic of a photonic mesoscopic superposition, and reveal light-matter entanglement.
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