Abstract
We have performed combined experimental and theoretical high-pressure investigations on magnetoelectric HgCr2S4 spinel. Overall, HgCr2S4 exhibits three reversible structural transitions under pressure: the starting Fd-3m phase adopts a tetragonal I41/amd structure at 20 GPa, an orthorhombic distortion occurs above 26 GPa, whereas a third structural transition takes place beyond 37 GPa. During the Fd-3m to I41/amd structural transition, HgCr2S4 experiences a volume change of 4% which is unexpected from space group symmetry considerations alone. Furthermore, the Fd-3m to I41/amd transformation appears to be concomitant with an insulator-to-metal transition whereas compression of HgCr2S4 leads to a gradual suppression of its ferromagnetism. © 2013 AIP Publishing LLC.
Cite
CITATION STYLE
Efthimiopoulos, I., Yaresko, A., Tsurkan, V., Deisenhofer, J., Loidl, A., Park, C., & Wang, Y. (2013). Multiple pressure-induced transitions in HgCr2S4. Applied Physics Letters, 103(20). https://doi.org/10.1063/1.4830225
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.