极化子
马格农
物理
光子
准粒子
凝聚态物理
哈密顿量(控制论)
腔量子电动力学
量子
微波腔
量子力学
量子电动力学
开放量子系统
微波食品加热
铁磁性
超导电性
数学优化
数学
作者
Dengke Zhang,Xiao‐Qing Luo,Yi‐Pu Wang,Tiefu Li,J. Q. You
标识
DOI:10.1038/s41467-017-01634-w
摘要
Magnon-polaritons are hybrid light-matter quasiparticles originating from the strong coupling between magnons and photons. They have emerged as a potential candidate for implementing quantum transducers and memories. Owing to the dampings of both photons and magnons, the polaritons have limited lifetimes. However, stationary magnon-polariton states can be reached by a dynamical balance between pumping and losses, so the intrinsically nonequilibrium system may be described by a non-Hermitian Hamiltonian. Here we design a tunable cavity quantum electrodynamics system with a small ferromagnetic sphere in a microwave cavity and engineer the dissipations of photons and magnons to create cavity magnon-polaritons which have non-Hermitian spectral degeneracies. By tuning the magnon-photon coupling strength, we observe the polaritonic coherent perfect absorption and demonstrate the phase transition at the exceptional point. Our experiment offers a novel macroscopic quantum platform to explore the non-Hermitian physics of the cavity magnon-polaritons.
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