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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Efficient excitation and control of arbitrary surface plasmon polariton beams using one-dimensional metallic gratings
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Efficient excitation and control of arbitrary surface plasmon polariton beams using one-dimensional metallic gratings

机译:使用一维金属光栅高效激发和控制任意表面等离子体激元束

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We derive a general approach for efficient excitation and control of arbitrarily shaped surface plasmon polariton waves, using one-dimensional metallic gratings by tailoring the exciting beam. We present a complete and rigorous theory that relates the electromagnetic fields of the free-space beam impinging on the grating to the resulting surface plasmon. We deduce an optimal grating and efficient polarization schemes which facilitate the excitation of surface plasmons propagating at angles up to almost 90 deg with respect to the grating's axis with negligible polarization losses. The theoretical predictions are verified both numerically and experimentally by exciting two-dimensional surface plasmons through one-dimensional metallic gratings. We show that this method can be readily applied for generating arbitrary plasmonic wave fronts, and the general design formalism is given. Finally, we show how the developed design rules can be applied for the excitation of optically controlled surface plasmon hot spots. (C) 2015 Optical Society of America
机译:我们通过调整激发光束,使用一维金属光栅,推导了一种有效激发和控制任意形状的表面等离激元极化波的通用方法。我们提出了一个完整而严格的理论,该理论将撞击在光栅上的自由空间光束的电磁场与所产生的表面等离激元相关联。我们推导了一种最佳的光栅和有效的极化方案,该方案可以激发表面等离激元,这些等离激元相对于光栅轴以几乎90度的角度传播,而极化损耗可忽略不计。通过一维金属光栅激发二维表面等离子体激元,在数值和实验上都验证了理论预测。我们表明该方法可以很容易地应用于生成任意等离激元波阵面,并给出了一般的设计形式。最后,我们展示了如何将开发的设计规则应用于光控表面等离子体激元热点的激发。 (C)2015年美国眼镜学会

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