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Suppressed Andreev Reflection at the Normal-Metal / Heavy-Fermion Superconductor CeCoIn$_5$ Interface

Superconductivity 2015-06-25 v1 Strongly Correlated Electrons

Abstract

Dynamic conductance spectra are taken from Au/CeCoIn5_5 point contacts in the Sharvin limit along the (001) and (110) directions. Our conductance spectra, reproducibly obtained over wide ranges of temperature, constitute the cleanest data sets ever reported for HFSs. A signature for the emerging heavy-fermion liquid is evidenced by the development of the asymmetry in the background in the normal state. Below TcT_c, an enhancement of the sub-gap conductance arising from Andreev reflection is observed, with the magnitude of \sim 13.3 % and \sim 11.8 % for the (001) and the (110) point contacts, respectively, an order of magnitude smaller than those observed in conventional superconductors but consistent with those in other HFSs. Our zero-bias conductance data for the (001) point contacts are best fit with the extended BTK model using the d-wave order parameter. The fit to the full conductance curve of the (001) point contact indicates the strong coupling nature (2Δ/kBTc=4.642\Delta/k_{B}T_c = 4.64). However, our observed suppression of both the Andreev reflection signal and the energy gap indicates the failure of existing models. We provide possible directions for theoretical formulations of the electronic transport across an N/HFS interface. Several qualitative features observed in the (110) point contacts provide the first clear spectroscopic evidence for the dx2y2d_{x^2-y^2} symmetry.

Keywords

Cite

@article{arxiv.cond-mat/0507353,
  title  = {Suppressed Andreev Reflection at the Normal-Metal / Heavy-Fermion Superconductor CeCoIn$_5$ Interface},
  author = {Wan Kyu Park and Laura H. Greene and John L. Sarrao and Joe D. Thompson},
  journal= {arXiv preprint arXiv:cond-mat/0507353},
  year   = {2015}
}

Comments

13 pages, 7 figures, LaTeX, paper invited and submitted to SPIE Conference on Strongly Correlated Electron Materials: Physics and Nanoengineering, in San Diego, California, July 31 - August 4, 2005