English

Torque Theory of Anisotropic Superconductors with No Phenomenological Parameter in determining Vortex Core Size

Superconductivity 2015-05-27 v1

Abstract

The contribution of vortex core has been taken into account properly in constructing a torque theory for multiband superconductors. We employ the prescription of describing internal magnetic field in the vortex lattice by Hao {\it et al.} and by Yaouanc {\it et al.} to derive a torque formula as a natural extension of a preceding London theory. In marked contrast with the preceding model, our novel formula does not contain a phenomenological parameter η\eta, which prevents us from obtaining a {\it true} upper critical field Hc2H_{\rm c2} by analyzing an experimental torque curve. The parameter η\eta was originally introduced to take care of the uncertainty in determining the vortex core size ξv\xi_v. Furthermore, we reveal that the η\eta value is universally scaled by anisotropy γ\gamma, magnetic field BB, and Hc2H_{\rm c2} due to field dependence of ξv\xi_v. This may revitalize the single-band Kogan model in combination with a universal function η(γ,B,Hc2)\eta(\gamma, B, H_{\rm c2}) instead of a constant η\eta.

Keywords

Cite

@article{arxiv.1103.1037,
  title  = {Torque Theory of Anisotropic Superconductors with No Phenomenological Parameter in determining Vortex Core Size},
  author = {Daichi Kubota and Nobuhiko Hayashi and Takekazu Ishida},
  journal= {arXiv preprint arXiv:1103.1037},
  year   = {2015}
}

Comments

Physical Review B, in press