English

Intermediate valence in single crystalline Yb$_2$Si$_2$Al

Strongly Correlated Electrons 2018-08-08 v2

Abstract

Yb2_2Si2_2Al may be a prototype for exploring different aspects of the Shastry-Sutherland lattice, formed by planes of orthogonally coupled Yb ions. Measurements of the magnetic susceptibility find incoherently fluctuating Yb3+^{3+} moments coexisting with a weakly correlated metallic state that is confirmed by measurements of the electrical resistivity. Increasing signs of Kondo coherence are found with decreasing temperature, including an enhanced Sommerfeld coefficient and Kadowaki-Woods ratio that signal that the metallic state found at the lowest temperatures is a Fermi liquid where correlations have become significantly stronger. A pronounced peak in the electronic and magnetic specific heat indicates that the coupling of the Yb moments to the conduction electrons leads to an effective Kondo temperature that is approximately 30 K. The valence of Yb2_2Si2_2Al has been investigated with electron spectroscopy methods. Yb2_2Si2_2Al is found to be strongly intermediate valent (vF=2.68(2)v_F=2.68(2) at 80 K). Taken together, these experimental data are consistent with a scenario where a coherent Kondo lattice forms in Yb2_2Si2_2Al from an incoherently fluctuating ensemble of Yb moments with incomplete Kondo compensation, and strong intermediate valence character.

Keywords

Cite

@article{arxiv.1802.07907,
  title  = {Intermediate valence in single crystalline Yb$_2$Si$_2$Al},
  author = {W. J. Gannon and K. Chen and M. Sundermann and F. Strigari and Y. Utsumi and K. -D. Tsuei and J. -P. Rueff and P. Bencok and A. Tanaka and A. Severing and M. C. Aronson},
  journal= {arXiv preprint arXiv:1802.07907},
  year   = {2018}
}

Comments

Submitted to Physical Review B

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