钇铁石榴石
钆镓石榴石
材料科学
马格农
消散
联轴节(管道)
凝聚态物理
超导电性
微波食品加热
微波腔
光子
钇
光电子学
铁磁性
光学
物理
纳米技术
外延
冶金
热力学
量子力学
图层(电子)
氧化物
作者
Yue Zhao,Yitong Sun,Zhenfa Wu,Yanxue Chen,Yufeng Tian,Shishen Yan,Lihui Bai
摘要
To explore potential applications in classical and quantum information transfer, the hybrid systems between yttrium iron garnet (YIG) and cavities have been extensively studied, and four coupling regimes have been defined based on the relative strength between the coupling strength and dissipation rate of each subsystem. Achieving the control of magnon–photon coupling between nano-thick YIG films and cavities remains to be explored. We experimentally measure the microwave transmission spectra of a nano-thick yttrium iron garnet/gadolinium gallium garnet (YIG/GGG) film coupled to a superconducting cavity at different temperatures. The dissipation rate of the superconducting cavity increases significantly with decreasing temperature, which is influenced by the temperature-dependent magnetic susceptibility of the GGG substrate. Accompanied by the temperature-dependent magnon dissipation rate, a continuous transformation of the coupled system in strong coupling, Purcell and weak coupling regimes is achieved.
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