Zheng Ri-Hua, Ning Wen, Chen Ye-Hong, Lü Jia-Hao, Shen Li-Tuo, Xu Kai, Zhang Yu-Ran, Xu Da, Li Hekang, Xia Yan, Wu Fan, Yang Zhen-Biao, Miranowicz Adam, Lambert Neill, Zheng Dongning, Fan Heng, Nori Franco, Zheng Shi-Biao
Fujian Key Laboratory of Quantum Information and Quantum Optics, College of Physics and Information Engineering, Fuzhou University, Fuzhou, Fujian 350108, China.
Theoretical Quantum Physics Laboratory, RIKEN Cluster for Pioneering Research, Wako-shi, Saitama 351-0198, Japan.
Phys Rev Lett. 2023 Sep 15;131(11):113601. doi: 10.1103/PhysRevLett.131.113601.
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.
超辐射相变(SPTs)对于理解量子水平上的光与物质相互作用非常重要,并且在临界增强量子传感中起着核心作用。到目前为止,超辐射相变已在驱动耗散系统中被观测到,但由于强耗散的存在,所产生的光场并未表现出任何非经典特性。在此,我们报告了超辐射相变的实验演示,其特征是出现了高度非经典的光子场,该实验通过将一个谐振器与一个超导量子比特耦合实现,此即实施量子拉比模型。我们通过维格纳矩阵层析成像对光与物质的状态进行了全面表征。所测量的矩阵元展现出光子介观叠加固有的量子干涉,并揭示了光与物质的纠缠。