Enhanced spin correlations in the Bose-Einstein condensate compound Sr3Cr2O8
Abstract
Combined experimental and modeling studies of the magnetocaloric effect, ultrasound, and magnetostriction were performed on single-crystal samples of the spin-dimer system SrCrO in large magnetic fields, to probe the spin-correlated regime in the proximity of the field-induced XY-type antiferromagnetic order also referred to as a Bose-Einstein condensate of magnons. The magnetocaloric effect, measured under adiabatic conditions, reveals details of the field-temperature () phase diagram, a dome characterized by critical magnetic fields = 30.4 T, = 62 T, and a single maximum ordering temperature T8 K. The sample temperature was observed to drop significantly as the magnetic field is increased, even for initial temperatures above , indicating a significant magnetic entropy associated to the field-induced closure of the spin gap. The ultrasound and magnetostriction experiments probe the coupling between the lattice degrees of freedom and the magnetism in SrCrO. Our experimental results are qualitatively reproduced by a minimalistic phenomenological model of the exchange-striction by which sound waves renormalize the effective exchange couplings.
Cite
@article{arxiv.2008.04547,
title = {Enhanced spin correlations in the Bose-Einstein condensate compound Sr3Cr2O8},
author = {T. Nomura and Y. Skourski and D. L. Quintero-Castro and A. A. Zvyagin and A. V. Suslov and D. Gorbunov and S. Yasin and J. Wosnitza and K. Kindo and A. T. M. N. Islam and B. Lake and Y. Kohama and S. Zherlitsyn and M. Jaime},
journal= {arXiv preprint arXiv:2008.04547},
year = {2020}
}
Comments
9 pages, 14 figures