English

Possible multi-orbital ground state in CeCu$_2$Si$_2$

Strongly Correlated Electrons 2021-01-06 v2

Abstract

The crystal-field ground state wave function of CeCu2_2Si2_2 has been investigated with linear polarized MM-edge x-ray absorption spectroscopy from 250mK to 250K, thus covering the superconducting (TcT_{\text{c}}=0.6K), the Kondo (TKT_{\text{K}}\approx20K) as well as the Curie-Weiss regime. The comparison with full-multiplet calculations shows that the temperature dependence of the experimental linear dichroism is well explained with a Γ7(1)\Gamma_7^{(1)} crystal-field ground-state and the thermal population of excited states at around 30meV. The crystal-field scheme does not change throughout the entire temperature range thus making the scenario of orbital switching unlikely. Spectroscopic evidence for the presence of the Ce 4f0f^0 configuration in the ground state is consistent with the possibility for a multi-orbital character of the ground state. We estimate from the Kondo temperature and crystal-field splitting energies that several percents of the higher lying Γ6\Gamma_6 state and Γ7(2)\Gamma_7^{(2)} crystal-field states are mixed into the primarily Γ7(1)\Gamma_7^{(1)} ground state. This estimate is also supported by re-normalized band-structure calculations that uses the experimentally determined crystal-field scheme.

Keywords

Cite

@article{arxiv.2010.01836,
  title  = {Possible multi-orbital ground state in CeCu$_2$Si$_2$},
  author = {Andrea Amorese and Andrea Marino and Martin Sundermann and Kai Chen and Zhiwei Hu and Thomas Willers and Fadi Choukani and Philippe Ohresser and Javier Herrero-Martin and Stefano Agrestini and Chien-Te Chen and Hong-Ji Lin and Maurits W. Haverkort and Silvia Seiro and Christoph Geibel and Frank Steglich and Liu Hao Tjeng and Gertrud Zwicknagl and Andrea Severing},
  journal= {arXiv preprint arXiv:2010.01836},
  year   = {2021}
}

Comments

8 pages, 5 figures

R2 v1 2026-06-23T19:02:01.081Z