Skip to main page content
U.S. flag

An official website of the United States government

Dot gov

The .gov means it’s official.
Federal government websites often end in .gov or .mil. Before sharing sensitive information, make sure you’re on a federal government site.

Https

The site is secure.
The https:// ensures that you are connecting to the official website and that any information you provide is encrypted and transmitted securely.

Access keys NCBI Homepage MyNCBI Homepage Main Content Main Navigation
. 2012 Apr 29;7(5):335-9.
doi: 10.1038/nnano.2012.61.

Red, green and blue lasing enabled by single-exciton gain in colloidal quantum dot films

Affiliations

Red, green and blue lasing enabled by single-exciton gain in colloidal quantum dot films

Cuong Dang et al. Nat Nanotechnol. .

Abstract

Colloidal quantum dots exhibit efficient photoluminescence with widely tunable bandgaps as a result of quantum confinement effects. Such quantum dots are emerging as an appealing complement to epitaxial semiconductor laser materials, which are ubiquitous and technologically mature, but unable to cover the full visible spectrum (red, green and blue; RGB). However, the requirement for high colloidal-quantum-dot packing density, and losses due to non-radiative multiexcitonic Auger recombination, have hindered the development of lasers based on colloidal quantum dots. Here, we engineer CdSe/ZnCdS core/shell colloidal quantum dots with aromatic ligands, which form densely packed films exhibiting optical gain across the visible spectrum with less than one exciton per colloidal quantum dot on average. This single-exciton gain allows the films to reach the threshold of amplified spontaneous emission at very low optical pump energy densities of 90 µJ cm(-2), more than one order of magnitude better than previously reported values. We leverage the low-threshold gain of these nanocomposite films to produce the first colloidal-quantum-dot vertical-cavity surface-emitting lasers (CQD-VCSEL). Our results represent a significant step towards full-colour single-material lasers.

PubMed Disclaimer

References

    1. Science. 2000 Oct 13;290(5490):314-7 - PubMed
    1. Phys Rev B Condens Matter. 1993 Apr 15;47(16):10528-10542 - PubMed
    1. Nature. 2007 May 24;447(7143):441-6 - PubMed
    1. Nature. 2002 Dec 19-26;420(6917):800-3 - PubMed
    1. J Chem Phys. 2009 Oct 28;131(16):164706 - PubMed

Publication types

LinkOut - more resources