Sr2RuO4 is an unconventional superconductor with a tetragonal structure, whereas Ca2RuO4 is a Mott insulator with orthorhombic symmetry. The substituted Ca2−xSrxRuO4 has yielded a rich phase diagram that is just beginning to be explored in detail. Experimental investigation of the resistivity ρ, susceptibility χ, specific heat Cp, Hall coefficient RH, and X-ray diffraction of Ca1.7Sr0.3RuO4 reveals a structural phase transition near T0 = 190 K and heavy-Fermion (HF) behavior below a coherence temperature T∗∼ 10 K, resembling that of the f-electron HF compound UPt3. The observation of T2-dependence of ρ below ∼ 0.5 K suggests a Fermi-liquid ground state. Based upon our data and theoretical calculations, we argue that the structural change at T0 may be responsible for the formation of the HF state.
@article{arxiv.cond-mat/0112405,
title = {Heavy-Electron Behavior and Structural Change in Ca1.7Sr0.3RuO4},
author = {R. Jin and J. R. Thompson and J. He and J. M. Farmer and N. Lowhorn and G. A. Lamberton, and T. M. Tritt and D. Mandrus},
journal= {arXiv preprint arXiv:cond-mat/0112405},
year = {2012}
}