Ultrafast room temperature single-photon source from nanowire-quantum dots.
basic_science · Level V
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- Record sourced from PubMed, PMID 22551197.
- Also identified by DOI 10.1021/nl300733f.
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Abstract
Epitaxial semiconductor quantum dots are particularly promising as realistic single-photon sources for their compatibility with manufacturing techniques and possibility to be implemented in compact devices. Here, we demonstrate for the first time single-photon emission up to room temperature from an epitaxial quantum dot inserted in a nanowire, namely a CdSe slice in a ZnSe nanowire. The exciton and biexciton lines can still be resolved at room temperature and the biexciton turns out to be the most appropriate transition for single-photon emission due to a large nonradiative decay of the bright exciton to dark exciton states. With an intrinsically short radiative decay time (≈300 ps) this system is the fastest room temperature single-photon emitter, allowing potentially gigahertz repetition rates.
Medical subject headings
- Cadmium Compounds
- Crystallization
- Nanotubes
- Quantum Dots
- Selenium Compounds
- Zinc Compounds