Short range order and topology of Te-rich amorphous Ge-Sb-Te alloys
arXiv:2405.15411 · doi:10.1111/jace.20258
Abstract
The structure of evaporated amorphous GeSbTe ( 6, 9, 13) alloys was investigated by neutron diffraction, X-ray diffraction and extended X-ray absorption spectroscopy (EXAFS) at the Ge, Sb and Te K-edges. Large scale structural models were generated by fitting the experimental datasets (5 for each composition) simultaneously in the framework of the reverse Monte Carlo simulation technique. It was found that the alloys are chemically ordered (Ge and Sb have predominantly Te neighbors) and within the experimental uncertainty each component satisfies the rule. A comparison with the pair correlation functions of melt quenched GeTe revealed that the first minimum of is shallower in the ternary alloys than in GeTe. On the other hand, the separation of the first and second coordination environments of Ge atoms is stronger in the Ge-Sb-Te alloys investigated.
32 pages, submitted to Journal of Alloys and Compounds