English

Charge multipoles correlations and order in Cs$_2$TaCl$_6$

Materials Science 2022-07-21 v1

Abstract

We examine the role of charge, structural, and spin degrees of freedom in the previously poorly understood phase transition in the 5d1d^1 transition-metal double perovskite Cs2_2TaCl6_6, using a combination of computational and experimental techniques. Our heat capacity measurements of single-crystalline Cs2_2TaCl6_6, reveal a clear anomaly at the transition temperature, TQT_\mathrm{Q}, which was not previously observed in polycrystalline samples. Density functional calculations indicate the emergence of local charge quadrupoles in the cubic phase, mediated by the paramagnetic spins or local structural distortions which then develop into long-range ordered charge quadrupoles in the tetragonal phase. Our resonant elastic x-ray scattering on Cs2_2TaCl6_6, single crystals lend support to our calculations. Our work provides new insight into the phase transition in Cs2_2TaCl6_6, at TQT_\mathrm{Q}, and demonstrates the utility of this combination of techniques in understanding the complex physics of hidden orders in paramagnetic spin-orbit-entangled compounds.

Keywords

Cite

@article{arxiv.2207.10042,
  title  = {Charge multipoles correlations and order in Cs$_2$TaCl$_6$},
  author = {Aria Mansouri Tehrani and Jian-Rui Soh and Jana Pásztorová and Maximilian E. Merkel and Ivica Živković and Henrik M. Rønnow and Nicola A. Spaldin},
  journal= {arXiv preprint arXiv:2207.10042},
  year   = {2022}
}
R2 v1 2026-06-25T01:05:25.888Z