English

Tunable Dirac nodal line in orthorhombic RuO$_2$

Materials Science 2025-05-20 v1

Abstract

Pressure evolution of RuO2 is studied using single-crystal x-ray diffraction in a diamond anvil cell, combined with \textit{ab initio} band-structure calculations. The tetragonal rutile structure transforms into the orthorhombic CaCl2_2-type structure above 13 GPa under quasi-hydrostatic pressure conditions. This second-order transition is ferroelastic in nature and accompanied by tilts of the RuO6_6 octahedra. Orthorhombic RuO2_2 is expected to be paramagnetic metal, similar to ambient-pressure RuO2_2. It shows the increased t2gegt_{2g}-e_g crystal-field splitting that is responsible for the pressure-induced color change. It further features the Dirac nodal line that shifts across the Fermi level upon compression.

Keywords

Cite

@article{arxiv.2411.11146,
  title  = {Tunable Dirac nodal line in orthorhombic RuO$_2$},
  author = {Ece Uykur and Oleg Janson and Victoria A. Ginga and Marcus Schmidt and Nico Giordano and Alexander A. Tsirlin},
  journal= {arXiv preprint arXiv:2411.11146},
  year   = {2025}
}

Comments

8 pages with appendix, 8 figures