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Titlebook: Reviews in Plasmonics 2016; Chris D. Geddes Book 2017 Springer International Publishing AG 2017 Fluorescence.Nanoscale.Nanostructures.Plas

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楼主: coherent
发表于 2025-3-28 15:47:26 | 显示全部楼层
Fractal Plasmonic Nanoantennae,currently of interest in advancing the performance of plasmonics based chemical and biological sensing techniques as well as in plasmonics based energy harvesting applications. Fractal geometries are an intriguing alternative in the design of plasmonic nanostructures as they offer tunable multi-band
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Compact Slow-Light Enhaced Plasmonic Waveguide Refractive Index Sensors,d slow-light system sandwiched between two conventional MDM waveguides. We first consider a MDM waveguide with small width structrue for comparison, and then consider two MDM waveguide based slow light systems: a MDM waveguide side-coupled to arrays of stub resonators system and a MDM waveguide side
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Experimental Observation of Melting of the Effective Minkowski Spacetime in Cobalt-Based Ferrofluidmonstrate a number of novel phenomena resulting from the broadband singular behavior of their density of photonic states. These novel phenomena and applications include microscopy, stealth technologies, enhanced quantum-electrodynamic effects, thermal hyperconductivity, superconductivity, and intere
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Surface Plasmon Resonance Based Fiber Optic Sensors Utilizing Zinc Oxide Thin Films and Nanostructu This is because a thin film of metal oxide enhances the electric field intensity at the oxide-analyte interface due to its high refractive index and also changes its refractive index due to its interaction with analyte to be sensed. Thus, the advantage of metal oxide is twofold. Zinc oxide (ZnO) is
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LSPR Biosensing: Recent Advances and Approaches,teraction with nanoscale spatial resolution. This technique has promising applications for robust and sensitive detection of biomolecular interactions. The portability and nano sized sensor enables the sensor miniaturization to a scale unapproachable by other planar technique like surface plasmon re
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