Nonpolar InGaN/GaN Core–Shell Single Nanowire Lasers
Author(s) -
Changyi Li,
Jeremy B. Wright,
Sheng Liu,
Ping Lu,
Jeffrey J. Figiel,
Benjamin Leung,
Weng W. Chow,
Igal Brener,
Daniel Koleske,
T. S. Luk,
Daniel Feezell,
S. R. J. Brueck,
George T. Wang
Publication year - 2017
Publication title -
nano letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 4.853
H-Index - 488
eISSN - 1530-6992
pISSN - 1530-6984
DOI - 10.1021/acs.nanolett.6b04483
Subject(s) - nanowire , materials science , laser , optoelectronics , core (optical fiber) , gallium nitride , shell (structure) , nanotechnology , optics , composite material , layer (electronics) , physics
We report lasing from nonpolar p-i-n InGaN/GaN multi-quantum well core-shell single-nanowire lasers by optical pumping at room temperature. The nanowire lasers were fabricated using a hybrid approach consisting of a top-down two-step etch process followed by a bottom-up regrowth process, enabling precise geometrical control and high material gain and optical confinement. The modal gain spectra and the gain curves of the core-shell nanowire lasers were measured using micro-photoluminescence and analyzed using the Hakki-Paoli method. Significantly lower lasing thresholds due to high optical gain were measured compared to previously reported semipolar InGaN/GaN core-shell nanowires, despite significantly shorter cavity lengths and reduced active region volume. Mode simulations show that due to the core-shell architecture, annular-shaped modes have higher optical confinement than solid transverse modes. The results show the viability of this p-i-n nonpolar core-shell nanowire architecture, previously investigated for next-generation light-emitting diodes, as low-threshold, coherent UV-visible nanoscale light emitters, and open a route toward monolithic, integrable, electrically injected single-nanowire lasers operating at room temperature.
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