Quasiparticle self-consistent $GW$ band structures and high-pressure phase transitions of LiGaO$_2$ and NaGaO$_2
Santosh Kumar Radha, Amol Ratnaparkhe, Walter R. L. Lambrecht

TL;DR
This study uses quasiparticle self-consistent $GW$ calculations to analyze the electronic structures, optical properties, and high-pressure phase transitions of LiGaO$_2$ and NaGaO$_2$, revealing their potential as ultrawide gap semiconductors.
Contribution
It provides detailed $GW$ band structures, symmetry labeling, and phase transition data for LiGaO$_2$ and NaGaO$_2$, including alternative crystal phases and their electronic properties.
Findings
Both materials have direct gaps of 5.81 eV (LiGaO$_2$) and 5.46 eV (NaGaO$_2$).
Electron-phonon coupling reduces gaps by about 0.2 eV.
Alternative phases have higher energy but smaller volume and different band gaps.
Abstract
Quasi-particle self-consistent calculations are presented for the band structures of LiGaO2 and NaGaO2 in the orthorhombic tetrahedrally coordinated crystal structures. Symmetry labeling of the bands near the gap is carried out and effective mass tensors are extracted for the conduction band minimum and crystal field split valence band maxima at . The gap is found to be direct at and is 5.81 eV in LiGaO2 and 5.46 eV in NaGaO2. Electron-phonon coupling zero-point normalization is estimated to lower these gaps by about 0.2 eV. Optical response functions are calculated within the independent particle long wavelength limit and show the expected anisotropy of the absorption onsets due to the crystal field splitting of the VBM. The results show that both materials are promising candidates as ultrawide gap semiconductors with wurtzite based tetrahedrally bonded…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
