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Room-temperature ultraviolet laser emission from self-assembled ZnO microcrystallite thin films

Applied Physics Letters · 1998 · Vol. 72(25) · pp. 3270–3272
Zikang TangGeorge K. WongPing YuM. KawasakiAkira OhtomoHideomi KoinumaYasutomo Segawa

Abstract

Room-temperature ultraviolet (UV) laser emission of ZnO microcrystallite thin films is reported. The hexagonal ZnO microcrystallites are grown by laser molecular beam epitaxy. They are self-assembled and parallelly arrayed on sapphire substrates. The facets of the hexagons form natural Fabry–Pérot lasing cavities. The optical gain for the room-temperature UV stimulated emission is of an excitonic nature and has a peak value an order of magnitude larger than that of bulk ZnO crystal. The observation of room-temperature UV lasing from the ordered, nano-sized ZnO crystals represents an important step towards the development of nanometer photoelectronics.

ZnO doping and propertiesGa2O3 and related materialsGaN-based semiconductor devices and materialsLasing thresholdMaterials scienceUltravioletSapphireOptoelectronicsLaserThin filmMolecular beam epitaxyEpitaxyCrystal (programming language)
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References
The Luminescence of ZnO under High One‐ and Two‐Quantum Excitation
physica status solidi (b) · 1975 · 598 citations
Optically pumped lasing of ZnO at room temperature
Applied Physics Letters · 1997 · 2,190 citations
Blue-green laser diodes
Applied Physics Letters · 1991 · 1,629 citations
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