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Quantum-Spillover-Enhanced Surface-Plasmonic Absorption at the Interface of Silver and High-Index Dielectrics

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arxiv 1504.07867 v2 pith:TIT34XY5 submitted 2015-04-29 physics.optics cond-mat.mtrl-sci

classification physics.opticscond-mat.mtrl-sci
keywords absorptiondielectricshigh-indexinterfacequantumsilversurface-plasmonicbandwidth
verification ladder T0 review T1 audit T2 compute T3 formal
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We demonstrate an unexpectedly strong surface-plasmonic absorption at the interface of silver and high-index dielectrics based on electron and photon spectroscopy. The measured bandwidth and intensity of absorption deviate significantly from the classical theory. Our density-functional calculation well predicts the occurrence of this phenomenon. It reveals that due to the low metal-to-dielectric work function at such interfaces, conduction electrons can display a drastic quantum spillover, causing the interfacial electron-hole pair production to dominate the decay of surface plasmons. This finding can be of fundamental importance in understanding and designing quantum nano-plasmonic devices that utilize noble metals and high-index dielectrics.

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