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Localized surface plasmon resonance effects on the magneto-optical activity of continuous Au/Co/Au trilayers

机译:局部表面等离子体共振对连续Au / Co / Au三层磁光活性的影响

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摘要

We study how the magneto-optical activity in polar configuration of continuous Au/Co/Au trilayers is affected by the excitation of localized plasmon resonances of an array of Au nanodiscs fabricated on top of them over a dielectric SiO2 spacer. We show that the effect of the nanodiscs array is twofold. First, it optimizes the absorption of light at specific photon energies corresponding to the localized surface plasmon excitation of the array, modifying the reflectivity of the system (we define this effect as the purely optical contribution). Second, upon localized plasmon resonance excitation, the electromagnetic field in the whole system is redistributed, and an enhanced magneto-optical activity occurs at those energies where the electromagnetic field in the magnetic layer is increased (this effect is identified as the purely magneto-optical contribution of the nanodiscs array).
机译:我们研究了在连续的Au / Co / Au三层膜的极性构型中的磁光活动如何受到在电介质SiO2间隔物上在其顶部制造的Au纳米盘阵列的局部等离振子共振的激发的影响。我们证明纳米盘阵列的作用是双重的。首先,它优化了特定光子能量下光的吸收,该光子能量对应于阵列的局部表面等离激元激发,从而改变了系统的反射率(我们将此效果定义为纯光学贡献)。其次,在局部等离振子共振激发下,整个系统中的电磁场会重新分布,并且在磁层中电磁场增加的那些能量处会发生增强的磁光活动(此效应被识别为纯磁光纳米磁盘阵列的贡献)。

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