Spinel LiGa5O8 prospects as ultra-wideband-gap semiconductor: Band structure, optical properties, and doping
Author:
Affiliation:
1. Department of Physics, Case Western Reserve University , 10900 Euclid Avenue, Cleveland, Ohio 44106-7079
Abstract
Funder
Air Force Office of Scientific Research
Publisher
American Vacuum Society
Link
https://pubs.aip.org/avs/jva/article-pdf/doi/10.1116/6.0003117/19667937/022705_1_6.0003117.pdf
Reference36 articles.
1. Absorption and Reflection of Vapor Grown Single Crystal Platelets of β-Ga2O3
2. MBE grown Ga2O3 and its power device applications
3. Native defects association enabled room-temperature p-type conductivity in β-Ga2O3
4. Enhancing the intrinsic p-type conductivity of the ultra-wide bandgap Ga2O3 semiconductor
5. First-principles study of point defects in LiGaO2
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1. Native defects and their complexes in spinel LiGa5O8;Journal of Applied Physics;2024-06-17
2. Deep polaronic acceptors in LiGa5O8;Journal of Applied Physics;2024-04-26
3. Wet and dry etching of ultrawide bandgap LiGa5O8 and LiGaO2;Journal of Vacuum Science & Technology B;2024-04-09
4. Experimental determination of the band offsets at the UWBG p-LiGa5O8/Ga2O3 interface;Applied Physics Letters;2024-03-18
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