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Absorption-induced scattering and surface plasmon out-coupling from absorber-coated plasmonic metasurfaces

机译:吸收剂引起的散射和表面等离激元从吸收体涂层的等离质子表面的耦合

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Interactions between absorbers and plasmonic metasurfaces can give rise to unique optical properties not present for either of the individual materials and can influence the performance of a host of optical sensing and thin-film optoelectronic applications. Here we identify three distinct mode types of absorber-coated plasmonic metasurfaces: localized and propagating surface plasmons and a previously unidentified optical mode type called absorption-induced scattering. The extinction of the latter mode type can be tuned by controlling the morphology of the absorber coating and the spectral overlap of the absorber with the plasmonic modes. Furthermore, we show that surface plasmons are backscattered when the crystallinity of the absorber is low but are absorbed for more crystalline absorber coatings. This work furthers our understanding of light-matter interactions between absorbers and surface plasmons to enable practical optoelectronic applications of metasurfaces.
机译:吸收体和等离子超表面之间的相互作用可能会导致独特的光学特性(对于任何一种单独的材料都不会出现),并且会影响许多光学传感和薄膜光电应用的性能。在这里,我们确定了吸收剂涂覆的等离激元超表面的三种不同的模式类型:局部和正在传播的表面等离激元,以及以前未确定的称为吸收诱导散射的光学模式类型。后一种模式的消光可通过控制吸收体涂层的形态以及吸收体与等离子体模式的光谱重叠来进行调整。此外,我们表明,当吸收体的结晶度较低时,表面等离激元会反向散射,但会吸收更多的结晶吸收体涂层。这项工作加深了我们对吸收体和表面等离子体激元之间光-质相互作用的理解,以使超表面的实际光电应用成为可能。

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