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Localized radiative energy transfer from a plasmonic bow-tie nano-antenna to a magnetic thin film stack

机译:从等离子蝴蝶结纳米天线到磁性薄膜堆叠的局部辐射能转移

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摘要

Localized radiative energy transfer from a near-field emitter to a magnetic thin film structure is investigated. A magnetic thin film stack is placed in the near-field of the plasmonic nano-antenna to utilize the evanescent mode coupling between the nano-antenna and magnetic thin film stack. A bow-tie nano-optical antenna is excited with a tightly focused beam of light to improve near-field radiative energy transfer from the antenna to the magnetic thin film structure. A tightly focused incident optical beam with a wide angular spectrum is formulated using Richards–Wolf vector field equations. Radiative energy transfer is investigated using a frequency domain 3D finite element method solution of Maxwell’s equations. Localized radiative energy transfer between the near-field emitter and the magnetic thin film structure is quantified for a given optical laser power at various distances between the near-field emitter and magnetic thin film.
机译:研究了从近场发射器到磁性薄膜结构的局部辐射能转移。将磁性薄膜叠层放置在等离子体纳米天线的近场中,以利用纳米天线与磁性薄膜叠层之间的e逝模式耦合。蝴蝶结纳米光学天线被紧密聚焦的光束激发,以改善从天线到磁性薄膜结构的近场辐射能量转移。使用Richards–Wolf矢量场方程式可形成具有广角光谱的紧密聚焦的入射光束。使用Maxwell方程的频域3D有限元方法解决方案来研究辐射能的传递。对于给定的光学激光功率,在近场发射器和磁性薄膜之间的各种距离处,量化了近场发射器和磁性薄膜结构之间的局部辐射能转移。

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