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Plasmon scattering from holes: from single hole scattering to Young’s experiment

机译:空穴的等离子散射:从单孔散射到Young的实验

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In this paper, the scattering of surface plasmon polaritons (SPPs) into photons at holes is investigated. A local, electrically excited source of SPPs using a scanning tunneling microscope (STM) produces an outgoing circular plasmon wave on a thick (200 nm) gold film on glass containing holes of 250, 500 and 1000 nm diameter. Fourier plane images of the photons from hole-scattered plasmons show that the larger the hole diameter, the more directional the scattered radiation. These results are confirmed by a model where the hole is considered as a distribution of horizontal dipoles whose relative amplitudes, directions, and phases depend linearly on the local SPP electric field. An SPP-Young’s experiment is also performed, where the STM-excited SPP wave is incident on a pair of 1 μm diameter holes in the thick gold film. The visibility of the resulting fringes in the Fourier plane is analyzed to show that the polarization of the electric field is maintained when SPPs scatter into photons. From this SPP-Young’s experiment, an upper bound of ≈200 nm for the radius of this STM-excited source of surface plasmon polaritons is determined.
机译:本文研究了表面等离激元极化子(SPPs)向空穴中光子的散射。使用扫描隧道显微镜(STM)的局部,电激发的SPP源在包含250、500和1000 nm直径的孔的玻璃上的厚(200 nm)金膜上产生出圆形等离激元波。来自孔散射等离子体激元的光子的傅立叶平面图像显示,孔直径越大,散射辐射的方向越明显。这些结果由一个模型证实,该模型将空穴视为水平偶极子的分布,其相对幅度,方向和相位线性依赖于局部SPP电场。还进行了SPP-Young的实验,其中STM激发的SPP波入射到厚金膜中一对直径为1μm的孔上。分析了所得条纹在傅里叶平面中的可见性,以显示当SPP散射到光子中时,电场的极化得以保持。根据这项SPP-Young的实验,确定了这种STM激发的表面等离激元极化子源半径的≈200nm上限。

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