English

Nuclear spin-lattice relaxation studies of Cu$_{2}$O

Materials Science 2022-03-28 v3 Strongly Correlated Electrons

Abstract

We report the 63^{63}Cu and 65^{65}Cu nuclear spin-lattice relaxation rate measurements of cuprous oxide Cu2_2O in a zero field Cu nuclear quadrupole resonance at TT = 77-325 K. From the detailed isotopic measurements of the relaxation rates, we successfully estimated a finite magnetic relaxation rate 63WM^{63}W_M and a predominant nuclear quadrupole relaxation rate 63WQ^{63}W_Q. 63WQ^{63}W_Q changed as T2.1T^{2.1}, while 63WM^{63}W_M changed as T1.6T^{1.6} or Tβexp(Δ/T)T^{\beta}\mathrm{exp}(-\it\Delta/T) with β\beta = 0.6(3) and Δ\it\Delta = 190(62) K. The nuclear spin scattering process due to a non-degenerate Fermi gas was discussed as a possible candidate of the magnetic relaxation.

Keywords

Cite

@article{arxiv.2201.13074,
  title  = {Nuclear spin-lattice relaxation studies of Cu$_{2}$O},
  author = {Yutaka Itoh},
  journal= {arXiv preprint arXiv:2201.13074},
  year   = {2022}
}

Comments

5 pages, 4 figures: revised & corrected typo mistake