English

Structurally triggered orbital and charge orderings in TlMnO$_3$ and related compounds

Strongly Correlated Electrons 2025-04-04 v2

Abstract

Rare earth perovskites (R3+R^{3+}M3+^{3+}O3_3), with eg1e_g^1 electronic occupation of the M dd states, display different types of metal-insulator transition. For manganites (M=Mn), metal-insulator transition is usually induced by the Jahn-Teller (JTJT) distortions, which stabilize orbital orderings (OO) at Mn sites. Among them, LaMnO3_3 shows a CC type OO and crystallizes with PbnmPbnm structure. Whereas, TlMnO3_3 shows a very distinct GG type OO with an unusual P1P\overline{1} structure. Employing first principles calculations, and symmetry mode analysis we rationalize structural and electronic origin of GG-type OO in TlMnO3_3. Going further, we consider nickelates (M=Ni), where metal-insulator transition is driven by a breathing distortion, which stabilizes the charge ordering (CO) at Ni sites. Interestingly, different JTJT and breathing distortions are very similar MO6_6 octahedral distortions and stem from high frequency phonon modes of ideal Pm3mPm\overline3m structure. Our comparative study reveals that following a common triggering mechanism these modes appear in their respective ground states.

Keywords

Cite

@article{arxiv.2407.21406,
  title  = {Structurally triggered orbital and charge orderings in TlMnO$_3$ and related compounds},
  author = {Subhadeep Bandyopadhyay and Philippe Ghosez},
  journal= {arXiv preprint arXiv:2407.21406},
  year   = {2025}
}