Published March 1, 1983 | Version v1
Journal article

Theory of superconductivity in reentrant superconductors; Tunneling in paramagnetic phase

  • 1. The James Franck Institute, The University of Chicago, Chicago, Illinois 60637

Description

We compute the temperature- (T-) dependent order parameter Δ(T), condensation energy H/sub c/2(T), and frequency-dependent density of states N/sub s/(ω), for a reentrant superconductor in the paramagnetic phase. Our parameters are chosen to be appropriate to ErRh4B4. To characterize microscopically the superconductivity, we numerically solve the analog of the Eliashberg equations using a simple diffusion model for the spin-fluctuation propagator. We find that, although the coupling between the local spins and the superconducting electrons is small by some measures, it nevertheless leads to results which strongly deviate from those observed in both the BCS and Abrikosov-Gorkov theory. Pair breaking increases overall as the temperature is lowered; this effect is partially compensated by the accompanying softening of the spin-fluctuation modes and the presence of the crystal-field splitting. All of these factors contribute to make the transition out of the superconducting state first order. Our results for N/sub s/(ω) compare reasonably well with recent point-contact tunneling experiments. The calculated form for Δ(T) is consistent with that derived from experimental measurements of a Fraunhoffer diffraction pattern using a Josephson-junction configuration

Additional details

Publishing Information

Journal Title
Phys. Rev., B: Condens. Matter
Journal Volume
27
Journal Issue
5
Series
Phys. Rev., B: Condens. Matter.
Journal Page Range
2740-2746
ISSN
0163-1829