English

Fresnel aperture diffraction: a phase-sensitive probe for superconducting pairing symmetry

Superconductivity 2011-03-03 v1

Abstract

Fresnel single aperture diffraction (FSAD) is proposed as a phase-sensitive probe for pairing symmetry and Fermi surface of a superconductor. We consider electrons injected, through a small aperture, into a thin superconducting (SC) layer. It is shown that in case of SC gap symmetry Δ(kx,k)=Δ(kx,k)\Delta(-k_x,\mathbf{k}_\parallel)=\Delta(k_x,\mathbf{k}_\parallel) with kxk_x and k\mathbf{k}_\parallel respectively the normal and parallel component of electron Fermi wavevector, quasiparticle FSAD pattern developed at the image plane is zeroth-order minimum if kxx=nπk_x x=n\pi (nn is an integer and xx is SC layer thickness). In contrast, if Δ(kx,k)=Δ(kx,k)\Delta(-k_x,\mathbf{k}_\parallel)=-\Delta(k_x, \mathbf{k}_\parallel), the corresponding FSAD pattern is zeroth-order maximum. Observable consequences are discussed for iron-based superconductors of complex multi-band pairings.

Keywords

Cite

@article{arxiv.1103.0424,
  title  = {Fresnel aperture diffraction: a phase-sensitive probe for superconducting pairing symmetry},
  author = {C. S. Liu and W. C. Wu},
  journal= {arXiv preprint arXiv:1103.0424},
  year   = {2011}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-21T17:34:12.419Z