paper

Giant Thermal Vibrations in the Framework Compounds Ba1-xSrxAl2O4

arXiv:1605.05880 · doi:10.1103/PhysRevB.94.054117

Abstract

Synchrotron X-ray diffraction (XRD) experiments were performed on the network compounds Ba1-xSrxAl2O4 at temperatures between 15 and 800 K. The ferroelectric phase of the parent BaAl2O4 is largely suppressed by the Sr-substitution and disappears for . Structural refinements reveal that the isotropic atomic displacement parameter () in the bridging oxygen atom for is largely independent of temperature and retains an anomalously large value in the adjacent paraelectric phase even at the lowest temperature. The systematically increases as increases, exhibiting an especially large value for . According to previous electron diffraction experiments for Ba1-xSrxAl2O4 with , strong thermal diffuse scattering occurs at two reciprocal points relating to two distinct soft modes at the M- and K-points over a wide range of temperatures below 800 K [Y. Ishii et al., Sci. Rep. 6, 19154 (2016)]. Although the latter mode disappears at approximately 200 K, the former does not condense, at least down to 100 K. On the contrary, it still survives at low-temperature. The anomalously large observed in this study is ascribed to these soft modes existing in a wide temperature range.

5 pages and 5 figures