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首页> 外文期刊>Optics Letters >Spatial control of surface plasmon polariton excitation at planar metal surface
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Spatial control of surface plasmon polariton excitation at planar metal surface

机译:平面金属表面的表面等离子体激元激元激发的空间控制

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摘要

We illustrate that the surface plasmon polariton (SPP) excitation through the prism coupling method is fundamentally limited by destructive interference of spatial light components. We propose that the destructive interference can be canceled out by tailoring the relative phase for the different wave-vector components. As a numerical demonstration, we show that through the phase modulation the excited SPP field is concentrated to a hot energy spot, and the SPP field intensity is dramatically enhanced about three-fold in comparison with a conventional Gaussian beam illumination. The proposed phase-shaped beam approach provides a new degree of freedom to fundamentally control the SPP excitation and benefits the development of surface-enhanced applications.
机译:我们说明,通过棱镜耦合方法的表面等离子体激元(SPP)激发基本上受到空间光分量的相消干涉的限制。我们建议可以通过为不同的波矢量分量定制相对相位来消除相消干扰。作为数值演示,我们表明通过相位调制,激发的SPP场集中到一个热能点,与传统的高斯光束照明相比,SPP场强度显着提高了三倍。所提出的相形束方法为从根本上控制SPP激发提供了新的自由度,并有利于表面增强应用的发展。

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