Exciton Fine Structure in Wurtzite Nanorods: Is the Exciton Ground State Always Dark?
basic_science · Level V
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- Record sourced from PubMed, PMID 40007329.
- Also identified by DOI 10.1021/acs.nanolett.4c06066.
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Abstract
Colloidal semiconductor nanorods have demonstrated potential as bright, stable, and polarized light sources. Emission of light in these and other nanocrystals proceeds through recombination of confined electron-hole pairs or excitons with tunable size-dependent resonant frequencies. Usually, their brightness is reduced by the "dark exciton"─a nonemissive state into which electron-hole pairs relax before recombining radiatively. Here we analyze the fine structure of exciton states in wurtzite CdSe nanorods and demonstrate that, for cylindrical nanorods of radii less than a critical value of <i>R</i> ∼ 30 Å and aspect ratios larger than ∼5, the exciton ground state is the bright emissive state polarized parallel to the axis of the nanorod.