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Enhanced electromagnetic.
There are regions of the localization of strongly enhanced electromagnetic fields usually called 'hot spots' (brighter areas in Figure 3 correspond to the points where stronger enhancement is observed).
Hybrid materials formed by plasmonic nanostructures and J-aggregates provide a unique combination of highly localized and enhanced electromagnetic field in metal constituent with large oscillator strength and extremely narrow exciton band of the organic component.
The investigation of the electromagnetic absorbability reveals that GN PANI Fe3O4 exhibits enhanced electromagnetic absorption properties compared to GN PANI and GN Fe3O4, which is mainly ascribed to the improved impedance matching, the geometric effect and the enhanced interfacial effects.
Enhanced electromagnetic absorption properties could be found for the ZnO@Fe sample as compared to the single component ZnO.
Our FDTD simulation of Au@ZnO verifies an enhanced electromagnetic field near ZnO surface upon visible light irradiation (Fig. 6e), which could enhance the production of charge carriers [38, 39].
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Therefore, RTS and NS structures are a more affordable geometry to enhance electromagnetic field that localized between needle-like rods.
The MWCNTs were demonstrated to have an effect on the dielectric constants, which effectively enhance electromagnetic shielding efficiency (SE) of the composites.
Radar absorbing structures (RAS) are made of materials similar to radome structures, but include electro-conductive materials to enhance electromagnetic (EM) wave absorption characteristics.
The band overcrowding requires enhancing electromagnetic interference (EMI) shielding effectiveness (SE), i.e., development of novel coatings, shields, and filters that prevent degradation of the performance of the systems operating in densely populated EM environment [1, 2].
Recently, plasmonic optical nanoantennas [1 4] made by novel metal nanoparticles (MNPs) have generated great research interest due to their capability or dramatically localizing and enhancing electromagnetic (EM) fields on the surface of the MNPs [5, 6] and have attracted much attention for near field applications in biosensing [7], spectroscopy [8], nanolithography [9, 10], etc.
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