Litcius/Paper detail

Localized UV emitters on the surface of β-Ga2O3

Jesse Huso, Matthew D. McCluskey, Yinchuan Yu, Md Minhazul Islam, F. A. Selim

2020Scientific Reports25 citationsDOIOpen Access PDF

Abstract

Abstract Monoclinic gallium oxide (β-Ga 2 O 3 ) is attracting intense focus as a material for power electronics, thanks to its ultra-wide bandgap (4.5–4.8 eV) and ability to be easily doped n -type. Because the holes self-trap, the band-edge luminescence is weak; hence, β-Ga 2 O 3 has not been regarded as a promising material for light emission. In this work, optical and structural imaging methods revealed the presence of localized surface defects that emit in the near-UV (3.27 eV, 380 nm) when excited by sub-bandgap light. The PL emission of these centers is extremely bright—50 times brighter than that of single-crystal ZnO, a direct-gap semiconductor that has been touted as an active material for UV devices.

Topics & Concepts

Band gapMaterials scienceMonoclinic crystal systemOptoelectronicsLuminescenceWide-bandgap semiconductorGallium oxideGalliumSemiconductorExcited stateDopingPhotoluminescenceLight emissionCrystal (programming language)OpticsCrystal structureAtomic physicsChemistryPhysicsCrystallographyMetallurgyProgramming languageComputer scienceGa2O3 and related materialsZnO doping and propertiesAdvanced Photocatalysis Techniques