马格农
钇铁石榴石
旋转
物理
量子
微波腔
连贯性(哲学赌博策略)
联轴节(管道)
消散
量子纠缠
微波食品加热
量子信息
光子
凝聚态物理
量子力学
材料科学
铁磁性
冶金
作者
Xufeng Zhang,Chang‐Ling Zou,Na Zhu,Florian Marquardt,Liang Jiang,Hong X. Tang
摘要
Abstract Extensive efforts have been expended in developing hybrid quantum systems to overcome the short coherence time of superconducting circuits by introducing the naturally long-lived spin degree of freedom. Among all the possible materials, single-crystal yttrium iron garnet has shown up recently as a promising candidate for hybrid systems, and various highly coherent interactions, including strong and even ultrastrong coupling, have been demonstrated. One distinct advantage in these systems is that spins form well-defined magnon modes, which allows flexible and precise tuning. Here we demonstrate that by dissipation engineering, a non-Markovian interaction dynamics between the magnon and the microwave cavity photon can be achieved. Such a process enables us to build a magnon gradient memory to store information in the magnon dark modes, which decouple from the microwave cavity and thus preserve a long lifetime. Our findings provide a promising approach for developing long-lifetime, multimode quantum memories.
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