English

Local electronic structure of dilute hydrogen in $\beta$-Ga$_2$O$_3$ probed by muons

Materials Science 2023-02-01 v1

Abstract

The local electronic structure of muons (Mu) as dilute pseudo-hydrogen in single-crystalline β\beta-Ga2_2O3_3 has been studied by the muon spin rotation/relaxation (μ\muSR). High-precision measurements over a long time range of \sim25 μ\mus have clearly identified two distinct Mu states: a quasi-static Mu (Mu1_1) and fast-moving Mu (Mu2_2). By comparing this result with predictions from the recently established ambipolarity model, these two states are respectively attributed to the relaxed-excited states associated with the donor (E+/0E^{+/0}) and acceptor (E/0E^{-/0}) levels predicted by density functional theory (DFT) calculations for the interstitial H. Furthermore, the local electronic structure of Mu1_1 is found to be an OMu-bonded state with three-coordinated oxygen. The structure is almost identical with the thermal equilibrium state of H, and it is found to function as an electron donor. The other Mu2_2 is considered to be in the hydride state (Mu^-) from the ambipolarity model, suggesting that it is in fast diffusion motion through the short-lived neutral state due to the charge exchange reaction with conduction electrons (Mu0+e^0+e^-\rightleftarrowsMu^-).

Keywords

Cite

@article{arxiv.2301.01883,
  title  = {Local electronic structure of dilute hydrogen in $\beta$-Ga$_2$O$_3$ probed by muons},
  author = {M. Hiraishi and H. Okabe and A. Koda and R. Kadono and T. Ohsawa and N. Ohashi and K. Ide and T. Kamiya and H. Hosono},
  journal= {arXiv preprint arXiv:2301.01883},
  year   = {2023}
}

Comments

7 pages, 4 figures, plus Supplemental Material (3 pages, 6 figures)