Substitutional sulfur and its vibrational fingerprints in SbSe
arXiv:2510.14590
Abstract
The configurational behavior of sulfur in antimony triselenide (SbSe) is investigated by combining infrared absorption spectroscopy with density functional theory. Four sulfur-related local vibrational modes are identified at 249, 273, 283, and 312~cm in melt-grown single crystals prepared from SbSe granulate. Their assignment to sulfur is confirmed through controlled indiffusion experiments using SbS and elemental sulfur, as well as isotope-substitution studies with S, which produce the expected frequency shifts. Polarization-resolved measurements, together with theoretical calculations of local vibrational modes, demonstrate that the observed spectral features are fully consistent with substitutional sulfur on the three inequivalent selenium sites of SbSe.
9 pages, 7 figures