Tin telluride: a weakly co-elastic metal
Abstract
We report resonant ultrasound spectroscopy (RUS), dilatometry/magnetostriction, magnetotransport, magnetization, specific heat, and Sn M\"ossbauer spectroscopy measurements on SnTe and SnCrTe. Hall measurements at K indicate that our Bridgman-grown single crystals have a -type carrier concentration of cm and that our Cr-doped crystals have an -type concentration of cm. Although our SnTe crystals are diamagnetic over the temperature range , the Cr-doped crystals are room temperature ferromagnets with a Curie temperature of 294 K. For each sample type, three-terminal capacitive dilatometry measurements detect a subtle 0.5 micron distortion at K. Whereas our RUS measurements on SnTe show elastic hardening near the structural transition, pointing to co-elastic behavior, similar measurements on SnCrTe show a pronounced softening, pointing to ferroelastic behavior. Effective Debye temperature, , values of SnTe obtained from Sn M\"ossbauer studies show a hardening of phonons in the range 60--115K ( = 162K) as compared with the 100--300K range ( = 150K). In addition, a precursor softening extending over approximately 100 K anticipates this collapse at the critical temperature, and quantitative analysis over three decades of its reduced modulus finds with , a value indicating a three-dimensional softening of phonon branches at a temperature K, considerably below . We suggest that the differences in these two types of elastic behaviors lie in the absence of elastic domain wall motion in the one case and their nucleation in the other.
Cite
@article{arxiv.1011.1445,
title = {Tin telluride: a weakly co-elastic metal},
author = {E. K. H. Salje and D. J. Safarik and K. A. Modic and J. E. Gubernatis and J. C. Cooley and R. D. Taylor and B. Mihaila and A. Saxena and T. Lookman and J. L. Smith and R. A. Fisher and M. Pasternak and C. P. Opeil and T. Siegrist and P. B. Littlewood and J. C. Lashley},
journal= {arXiv preprint arXiv:1011.1445},
year = {2015}
}