纳米磁铁
物理
凝聚态物理
光子
自旋(空气动力学)
光子学
联轴节(管道)
各向异性
材料科学
量子力学
磁化
磁场
热力学
冶金
作者
Öney O. Soykal,Michael E. Flatté
标识
DOI:10.1103/physrevb.82.104413
摘要
The coherent dynamics of a coupled photonic cavity and a nanomagnet is explored as a function of nanomagnet size. For sufficiently strong coupling eigenstates involving highly entangled photon and spin states are found, which can be combined to create coherent states. As the size of the nanomagnet increases its coupling to the photonic mode also monotonically increases, as well as the number of photon and spin states involved in the system's eigenstates. For small nanomagnets the crystalline anisotropy of the magnet strongly localized the eigenstates in photon and spin number, quenching the potential for coherent states. For a sufficiently large nanomagnet the macrospin approximation breaks down and different domains of the nanomagnet may couple separately to the photonic mode. Thus the optimal nanomagnet size is just below the threshold for failure of the macrospin approximation.
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