Peculiarities of the density of states in SN junctions
Abstract
We study the density of states (DoS) in a normal-metallic (N) film contacted by a bulk superconductor (S). We assume that the system is diffusive and the SN interface is transparent. In the limit of thin N layer (compared to the coherence length), we analytically find three different types of the DoS peculiarity at energy equal to the bulk superconducting order parameter . (i) In the absence of the inverse proximity effect, the peculiarity has the check-mark form with as long as the thickness of the N layer is smaller than a critical value. (ii) When the inverse proximity effect comes into play, the check-mark is immediately elevated so that . (iii) Upon further increasing of the inverse proximity effect, gradually evolves to the vertical peculiarity (with an infinite-derivative inflection point at ). This crossover is controlled by a materials-matching parameter which depends on the relative degree of disorder in the S and N materials.
Keywords
Cite
@article{arxiv.2205.06171,
title = {Peculiarities of the density of states in SN junctions},
author = {A. A. Mazanik and Ya. V. Fominov},
journal= {arXiv preprint arXiv:2205.06171},
year = {2022}
}
Comments
20 pages, 8 figures. Version 2: updated Introduction and Conclusions, added Discussion section (on experimental relevance) and references. Final version as published in Annals of Physics