The interaction of localized surface plasmon resonances (LSPRs) with the photonic modes in an opal photonic crystal is reported. Gold nanocrescents are evaporated at glancing angles over both microsphere monolayers and artifi cial opals. Microsphere monolayers allow the three localised plasmonic resonances observed in the nanocrescent optical...
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2013 (v1)PublicationUploaded on: October 11, 2023
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2022 (v1)Publication
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2024 (v1)Publication
Halide perovskite nanocrystals (NCs), specifically CsPbBr3, have attracted considerable interest due to their remarkable optical properties for optoelectronic devices. To achieve high-efficiency light-emitting diodes (LEDs) based on CsPbBr3 nanocrystals (NCs), it is crucial to optimize both their photoluminescence quantum yield (PLQY) and...
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2023 (v1)Publication
: Optical microcavities grant manipulation over light-matter interactions and light propagation, enabling the fabrication of foundational optical and optoelectronic components. However, the materials used for high-performing systems, mostly bulk inorganics, are typically costly, and their processing is hardly scalable. In this work, we present...
Uploaded on: January 31, 2024 -
2023 (v1)Publication
Optical microcavities grant the ability to manipulate interactions between light and matter, as well as control light propagation. These capabilities have paved the way for the development of essential optical and optoelectronic components. However, the materials typically used in high-performance systems, primarily bulk inorganics, are often...
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2022 (v1)Publication
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2022 (v1)Publication
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2023 (v1)Publication
Cadmium mercury selenide (CdHgSe) nanocrystals exhibit a unique combination of low-energy optical absorption and emission, which can be tuned from the visible to the infrared range through both quantum confinement and adjustment of their composition. Owing to this advantage, such nanocrystals have been studied as a promising narrow-band...
Uploaded on: February 4, 2024