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Waveguide and Plasmonic Absorption-Induced Transparency

机译:波导和等离子体吸收引起的透明度

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摘要

Absorption-induced transparency (AIT) is one of the family of induced transparencies that has emerged in recent decades in the fields of plasmonics and metamaterials. It is a seemingly paradoxical phenomenon in which transmission through nanoholes in gold and silver is dramatically enhanced at wavelengths where a physisorbed dye layer absorbs strongly. The origin of AIT remains controversial, with both experimental and theoretical work pointing to either surface (plasmonic) or in-hole (waveguide) mechanisms. Here, we resolve this controversy by carefully filling nanoholes in a silver film with dielectric material before depositing dye on the surface. Our experiments and modeling show that not only do plasmonic and waveguide contributions to AIT both exist, but they are spectrally identical, operating in concert when the dye is both in the holes and on the surface.
机译:吸收诱导的透明性(AIT)是最近几十年来在等离子和超材料领域中出现的一系列诱导透明性之一。这是一种看似自相矛盾的现象,其中在物理吸附的染料层强烈吸收的波长处,金和银中的纳米孔的传输显着增强。 AIT的起源仍存在争议,无论是实验还是理论工作都指向表面(等离子体)或孔内(波导)机理。在这里,我们通过在介电材料上仔细地在银膜中的纳米孔中填充染料,然后再在表面上沉积染料来解决这一争议。我们的实验和建模表明,不仅存在等离子体和波导对AIT的贡献,而且它们在光谱上是相同的,当染料既在孔中又在表面时,它们协同工作。

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