Boron doping in gallium oxide from first principles
arXiv:1910.07371
Abstract
We study the feasibility of boron doping in gallium oxide () for neutron detection. is a wide band-gap, radiation hard material which has potential for neutron detection if it can be doped with a neutron active element. We investigate the boron-10 isotope as a possible neutron active dopant. Intrinsic and boron induced defects in are studied with semi-local and hybrid density-functional-theory calculations. We find that in growth conditions favourable for boron, boron substitutional defects are likely to form making boron doping of feasible.
9 pages, 7 figures, 5 tables