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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Amplitude scaling and lateral shift of leaky radiation from surface plasmon excitation
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Amplitude scaling and lateral shift of leaky radiation from surface plasmon excitation

机译:表面等离子体激发淋雾辐射幅度和横向移位

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摘要

We investigate spatial field transformation in surface plasmon excitation by a prism coupling configuration. By exciting surface plasmon polaritons (SPPs), the total reflected field is contributed by the direct reflection of the incident wave and the outgoing radiation of the SPP leakage. We show that the SPP leaky radiation field enables both an amplitude scaling and a lateral shift, which play an important role in forming the total reflected field profile. We classify the spatial field transformation by different coupling conditions from weak coupling to critical and strong cases. A method is proposed to evaluate loss rate ratio between the leaky radiation and the material intrinsic absorption, by measuring the reflected beam profile under flat-top beam illumination. This study paves the way for fast computing and optimizing the incident light to control the total reflected field intensity distribution, which is practically significant in the applications of spatial field, such as plasmonic spatial light modulators and computations. (C) 2019 Optical Society of America
机译:我们通过棱镜耦合配置调查表面等离子体激发的空间场变换。通过激发表面等离子体极性恒星(SPP),总反射场通过入射波的直接反射和SPP泄漏的输出辐射贡献。我们表明SPP泄漏的辐射场使幅度缩放和横向移位都能够在形成总反射场轮廓方面发挥着重要作用。通过弱耦合与关键和强案例的不同耦合条件,我们将空间场转换分类。提出了一种方法来评估漏极辐射与材料内在吸收之间的损耗比,通过在平顶梁照明下测量反射光束轮廓。本研究铺平了快速计算和优化入射光以控制总反射场强度分布的方式,这在空间场的应用中实际上显着,例如等离子体空间光调制器和计算。 (c)2019年光学学会

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