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Anomalous spectral shift of localized surface plasmon resonance

Saikiran Kosame, Mukkath Joseph Josline, Jae‐Hyun Lee, Heongkyu Ju

2024Nanoscale Advances16 citationsDOIOpen Access PDF

Abstract

, indigo carmine (IC) solution at around 420 nm wavelength. The blue shift occurred at a larger concentration of AgNPs or at a larger concentration of IC solution, being in obvious contrast to spectral red shift which was widely witnessed in plasmon spectral shift in a linear regime. Plasmon-enhanced local fields could excite the third-order optical nonlinearity for blue shift even under continuous (non-pulsed) light illumination. We also found that the plasmon-excited nonlinearity could allow for differential nonlinear response of the IC solution to be even greater than its differential linear response, though appearing to be somewhat inconsistent with what was generally known in light-matter interaction. The demonstrated properties of such anomalous shift of plasmon spectral peaks and its accompanying properties indicated that plasmon technologies could be exploited not only in linear but also in nonlinear aspects for critical optimization in plasmon-energy harvesting systems such as in surface enhanced spectroscopy/microscopy, biomedical imaging/sensing, laser frequency conversion, ultrashort pulse generation, and all-optical switching.

Topics & Concepts

Surface plasmon resonanceLocalized surface plasmonResonance (particle physics)Surface plasmonPlasmonSurface plasmon polaritonMaterials scienceNuclear magnetic resonancePhysicsAtomic physicsOptoelectronicsNanotechnologyNanoparticleGold and Silver Nanoparticles Synthesis and ApplicationsPlasmonic and Surface Plasmon ResearchPhotonic Crystals and Applications
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