2021
DOI: 10.1002/adpr.202000129
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Coherent Networks of Si Nanocrystals: Tunable Collective Resonances with Narrow Spectral Widths

Abstract: The ultralong coherent networks of Si nanocrystals (NCs) via lattice‐enhanced dipole–dipole coupling and the formation of disordered arrays of phase‐correlated field hotspots are studied. Such arrays occur in structures consisting of Si NCs randomly positioned inside long strips that are periodically repeated. The theoretical results predict the formation of all‐dielectric coherent networks of Si NCs, formed via in‐phase coupling of the resonances generated by diffraction of light. Such networks are extended a… Show more

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Cited by 2 publications
(1 citation statement)
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“…QD nanowires formed via genetically engineered non-toxic virus will be used as energy channels. These QD-coated viral nanowires will be biologically conjugated to a light-harvesting antenna (up-conversion nanoparticles) at one end and QD receivers at the other, forming biologically-templated energy circuits as depicted in Figure 4 [ 73 ].…”
Section: Qd-based Nanobiosensorsmentioning
confidence: 99%
“…QD nanowires formed via genetically engineered non-toxic virus will be used as energy channels. These QD-coated viral nanowires will be biologically conjugated to a light-harvesting antenna (up-conversion nanoparticles) at one end and QD receivers at the other, forming biologically-templated energy circuits as depicted in Figure 4 [ 73 ].…”
Section: Qd-based Nanobiosensorsmentioning
confidence: 99%