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The observed spectra are typical for plasmonic crystals on high-refractive index substrates [9].
The ESPS-NIS meeting discussed all these aspects, which include material growth, characterization, theory and device topics related to patterned substrates, novel index substrates and low dimensional structures.
Without using out-coupling optics or high refractive index substrates, CRI of 85 and LE as high as 33 lm W−1 and 14 lm W−1 have been demonstrated on ITO-free glass and flexible substrates, respectively.
The plasmonic crystal transmission is simpler on high-refractive index substrates than on glass because of the fact that GaP/Au interface does not support surface plasmon polaritons (SPPs) in the spectral range below about 620 nm because of the ε GaP + ε Au > 0, so that only SPP modes on the Au/air interface are important.
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For higher index substrate ([112]), faceting effects become visible on the edges of quantum dots and are very well pronounced for high-[118] index substrate.
Si wafer, with Si3N4 as the high refractive index layer and SiO2 as relatively low refractive index substrate.
The index distribution is appropriate when considering the matching between a low index substrate (MgF2) and a high index buffer layer (AZO).
Therefore, it appears that also dielectric nanoparticles can profit from an enhanced angular distribution of scattered light when embedded into a high refractive index substrate.
The program of 10 invited speakers, 30 contributed and numerous posters covered a wide range of topics, all connected with the study of substrate patterning and high index substrate influence on the growth and the control of semiconductor nanostructures.
By utilizing a high refractive index substrate, a high light scattering electrode, and an external light extraction structure, trapped photons in the wave-guided and substrate modes were extracted effectively.
Surprisingly, the overall shell-like structure of single particle states is preserved even for highly facetted, high-index substrates.
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