English

Origin and stability of the charge density wave in ScV$_6$Sn$_6$

Strongly Correlated Electrons 2023-10-16 v1 Materials Science

Abstract

Kagome metals are widely recognized as versatile platforms for exploring novel topological properties, unconventional electronic correlations, magnetic frustration, and superconductivity. In the RRV6_6Sn6_6 family of materials (RR = Sc, Y, Lu), ScV6_6Sn6_6 hosts an unusual charge density wave ground state as well as structural similarities with the AAV3_3Sb5_5 system (AA = K, Cs, Rb). In this work, we combine Raman scattering spectroscopy with first-principles lattice dynamics calculations to reveal the charge density wave state in ScV6_6Sn6_6. In the low temperature phase, we find a five-fold splitting of the V-containing totally symmetric mode near 240 cm1^{-1} suggesting that the density wave acts to mix modes of PP6/mmmmmm and RR3ˉ\bar{3}mm symmetry - an effect that we quantify by projecting phonons of the high symmetry state onto those of the lower symmetry structure. We also test the stability of the density wave state under compression and find that both physical and chemical pressure act to quench the effect. We discuss these findings in terms of symmetry and the structure-property trends that can be unraveled in this system.

Keywords

Cite

@article{arxiv.2305.01086,
  title  = {Origin and stability of the charge density wave in ScV$_6$Sn$_6$},
  author = {Yanhong Gu and Ethan Ritz and William R. Meier and Avery Blockmon and Kevin Smith and Richa Pokharel Madhogaria and Shirin Mozaffari and David Mandrus and Turan Birol and Janice L. Musfeldt},
  journal= {arXiv preprint arXiv:2305.01086},
  year   = {2023}
}