English

Charge fluctuations in the intermediate-valence ground state of SmCoIn$_5$

Strongly Correlated Electrons 2023-08-30 v1 Superconductivity

Abstract

The microscopic mechanism of heavy band formation, relevant for unconventional superconductivity in CeCoIn5_5 and other Ce-based heavy fermion materials, depends strongly on the efficiency with which ff electrons are delocalized from the rare earth sites and participate in a Kondo lattice. Replacing Ce3+^{3+} (4f14f^1, J=5/2J=5/2) with Sm3+^{3+} (4f54f^5, J=5/2J=5/2), we show that a combination of crystal field and on-site Coulomb repulsion causes SmCoIn5_5 to exhibit a Γ7\Gamma_7 ground state similar to CeCoIn5_5 with multiple ff electrons. Remarkably, we also find that with this ground state, SmCoIn5_5 exhibits a temperature-induced valence crossover consistent with a Kondo scenario, leading to increased delocalization of ff holes below a temperature scale set by the crystal field, TvT_v \approx 60 K. Our result provides evidence that in the case of many ff electrons, the crystal field remains the most important tuning knob in controlling the efficiency of delocalization near a heavy fermion quantum critical point, and additionally clarifies that charge fluctuations play a general role in the ground state of "115" materials.

Keywords

Cite

@article{arxiv.2307.13534,
  title  = {Charge fluctuations in the intermediate-valence ground state of SmCoIn$_5$},
  author = {David W. Tam and Nicola Colonna and Neeraj Kumar and Cinthia Piamonteze and Fatima Alarab and Vladimir N. Strocov and Antonio Cervellino and Tom Fennell and Dariusz Jakub Gawryluk and Ekaterina Pomjakushina and Y. Soh and Michel Kenzelmann},
  journal= {arXiv preprint arXiv:2307.13534},
  year   = {2023}
}

Comments

12 pages, 5 figures