English

Kondo-like behavior in a mixed valent oxypnictide $\mathrm{La_{3}Cu_{4}P_{4}O_{2}}$

Strongly Correlated Electrons 2025-03-06 v1 Materials Science Superconductivity

Abstract

We have synthesized and characterized the physical properties of a layered, mixed valent oxypnictide La3Cu4P4O2\mathrm{La_{3}Cu_{4}P_{4}O_{2}} via magnetization, electrical resistivity, and specific heat measurements. Although La3Cu4P4O2\mathrm{La_{3}Cu_{4}P_{4}O_{2}} does not exhibit superconductivity down to T = 0.5 K, it demonstrates an intriguing resistivity minimum observed at Tmin\mathrm{T_{min}} = 13.7 K. Disappearance of the resistivity minimum under an applied magnetic field of μ0H\mathrm{\mu_{0}H} = 9 T together with the negative magnetoresistance at low and positive at high temperatures are observed, which are typical for both Kondo-like spin-dependent scattering and 3D weak localization. We argue that the Kondo scattering is a more plausible explanation due to the low-temperature deviation from a Curie-Weiss law observed in the magnetic susceptibility, consistent with the presence of magnetic interactions between paramagnetic Cu2+\mathrm{Cu^{2+}} ions and Kondo screening of these Cu2+\mathrm{Cu^{2+}} moments. We supplemented the experimental characterization with a detailed description of chemical bonding, employing density functional theory (DFT) calculations and crystal orbital Hamilton population (COHP) analysis for La3Cu4P4O2\mathrm{La_{3}Cu_{4}P_{4}O_{2}} and isostructural La3Ni4P4O2\mathrm{La_{3}Ni_{4}P_{4}O_{2}}, which is a superconductor with Tc=2.2\mathrm{T_c = 2.2} K. Based on the calculations performed, we present the difference between La3Cu4P4O2\mathrm{La_{3}Cu_{4}P_{4}O_{2}} and La3Ni4P4O2\mathrm{La_{3}Ni_{4}P_{4}O_{2}} in the character of electronic states at the Fermi level. This discrepancy impacts structural stability and may cause a lack of superconductivity in La3Cu4P4O2\mathrm{La_{3}Cu_{4}P_{4}O_{2}} down to T = 0.5 K.

Keywords

Cite

@article{arxiv.2503.03447,
  title  = {Kondo-like behavior in a mixed valent oxypnictide $\mathrm{La_{3}Cu_{4}P_{4}O_{2}}$},
  author = {Szymon Królak and Michał J. Winiarski and Duygu Yazici and Soohyeon Shin and Tomasz Klimczuk},
  journal= {arXiv preprint arXiv:2503.03447},
  year   = {2025}
}

Comments

13 pages, 9 figures