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光学薄钴膜中亚波长孔六边形阵列的光学和磁性特性。

Optical and magnetic properties of hexagonal arrays of subwavelength holes in optically thin cobalt films.

作者信息

Ctistis G, Papaioannou E, Patoka P, Gutek J, Fumagalli P, Giersig M

机构信息

Center of Advanced European Studies and Research, Nanoparticle Technology Department, 53175 Bonn, Germany.

出版信息

Nano Lett. 2009 Jan;9(1):1-6. doi: 10.1021/nl801811t.

Abstract

In this study, we present our experimental results on the optical, magnetic, as well as magneto-optic properties of hexagonal arrays of subwavelength holes in optically thin cobalt films. Different meshes were used with hole diameters ranging between 220 and 330 nm while the interhole distance has been kept constant at 470 nm. The hole pattern modifies completely the magnetic behavior of the cobalt films; it gives rise to an increase of the coercive field of the in-plane magnetization with increasing hole diameter and to the appearance of out-of-plane magnetization components. Magneto-optic measurements show a spectacular magneto-optic response at wavelengths where surface plasmon-polaritons are supported by the structure as deduced in optical measurements. The experiments demonstrate the ability to artificially control the magnetic and thus the magneto-optic properties in hole array structures.

摘要

在本研究中,我们展示了关于光学薄钴膜中亚波长孔六边形阵列的光学、磁性以及磁光特性的实验结果。使用了不同的网格,孔径在220至330纳米之间变化,而孔间距保持恒定为470纳米。孔图案完全改变了钴膜的磁行为;随着孔径增大,它导致面内磁化矫顽场增加,并出现面外磁化分量。磁光测量表明,在光学测量推断出结构支持表面等离激元极化子的波长处,存在显著的磁光响应。实验证明了在孔阵列结构中人工控制磁性以及磁光特性的能力。

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