Spin-orbit entanglement in Mn<sup>3+</sup> driven by Jahn-Teller distortions

ORAL

Abstract

Spin-orbit entanglement in 4d and 5d transition metal systems can enhance electronic correlations, leading to nontrivial ground states and the emergence of exotic excitations. There is also an interest to investigate spin-orbit entanglement in 3d compounds, though this is challenging due to their smaller spin-orbit coupling. Here we analyze multi-orbital 3d transition metals involving t2g and eg states interacting with light, offering ways to tune their properties and uncover novel physics. In particular, we discuss how the Jahn-Teller effect in Mn3+ lifts the orbital degeneracy in the eg manifold, reducing the energy gap between high- and low- spin-orbital states, leading to enhanced spin-orbit entanglement [i. ii, iii]. Through magneto-optical spectroscopy we have revealed such strong spin-orbital-lattice coupling, resulting from Jahn-Teller polarons interacting with electromagnetic radiation. To model these light-matter interactions we appliy group-theoretic quantum chemistry methods [ii] and many-body group-theoretical techniques. Our results show a rare example of synergistic effects of Jahn-Teller and spin-orbit interactions and provide a way to entangle different degrees of freedom in d-metal oxides, which may allow paths to explore the interplay of orbital, lattice and spins in 3d correlated systems.



[i]. Casals et al. Phys. Rev. Lett. 117, 026401 (2016).

[ii]. Miñarro & Herranz, Phys. Rev. B 106, 165108 (2022)

[iii]. Miñarro et al. Nat Commun 15, 8694 (2024)

*We acknowledge financial support from Projects No. PID2023-152225NB-I00, PID2023-147211OB-C21, PID2020-118479RBI00, PID2020-112548RB-I00, and Severo Ochoa MATRANS42 (No. CEX2023-001263-S) of the Spanish Ministry of Science and Innovation (Grant No. MICIU/AEI/10.13039/501100011033 and FEDER, EU)") Projects No. TED2021-129857B-I00 and TED2021-130453B-C21, funded by MCIN/AEI/10.13039/501100011033 and European Union NextGeneration EU/PRTR and by the Generalitat de Catalunya (2021 SGR 00445, 2021 SGR 00804).

Presenters

  • Gervasi Herranz

    • Consejo Superior de Investigaciones Cientificas (CSIC)
    • Institute for Materials Science of Barcelona ICMAB-CSIC

Authors

  • Alejandro Sánchez Miñarro

    • Institute for Materials Science of Barcelona ICMAB-CSIC
  • Mario Villa Navas

    • Institute for Materials Science of Barcelona ICMAB-CSIC
  • Blai Casals

    • Institute for Materials Science of Barcelona ICMAB-CSIC
  • Sergi Plana-Ruiz

    • Universitat Rovira i Virgili, Tarragona
  • Jaume Gazquez

    • Institut de Ciencia de Materials de Barcelona
    • Institute for Materials Science of Barcelona ICMAB-CSIC
  • Florencio Sanchez

    • Institute for Materials Science of Barcelona ICMAB-CSIC
  • Gervasi Herranz

    • Consejo Superior de Investigaciones Cientificas (CSIC)
    • Institute for Materials Science of Barcelona ICMAB-CSIC