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Fizika Tverdogo Tela, 2017 Volume 59, Issue 5, Pages 959–964 (Mi ftt9588)

This article is cited in 6 papers

Phase transitions

Thermal, optical, and dielectric properties of fluoride Rb$_{2}$TaF$_{7}$

E. I. Pogoreltsevab, S. V. Melnikovaa, A. V. Kartashevac, M. V. Gorevab, I. N. Flerovab, N. M. Laptashd

a L. V. Kirensky Institute of Physics, Siberian Branch of the Russian Academy of Sciences, Krasnoyarsk
b Institute of Engineering Physics and Radioelectronics, Siberian Federal University, Krasnoyarsk
c Krasnoyarsk State Pedagogical University named after V. P. Astaf'ev
d Institute of Chemistry, Far East Branch of the Russian Academy of Sciences, Vladivostok

Abstract: The thermal, optical, and dielectric properties of fluoride Rb$_{2}$TaF$_{7}$ were investigated. It was observed that the variation in chemical pressure in fluorides $A^{+}_{2}$TaF$_{7}$ caused by the cation substitution of rubidium for ammonium does not affect the ferroelastic nature of structural distortions, but leads to stabilization of the high- and low-temperature phases and enhancement of birefringence. The entropy of the phase transition $P$4/$nmm\leftrightarrow Cmma$ is typical of the shift transformations, which is consistent with a model of the initial and distorted phase structures. The anisotropy of chemical pressure causes the change of signs of the anomalous strain and baric coefficient $dT/dp$ of Rb$_{2}$TaF$_{7}$ as compared with the values for its ammonium analog.

Received: 26.09.2016
Revised: 19.10.2016

DOI: 10.21883/FTT.2017.05.44387.358


 English version:
Physics of the Solid State, 2017, 59:5, 986–991

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