English

Geometrical confinement effects in layered mesoscopic vortex-matter

Superconductivity 2020-07-14 v1

Abstract

We study geometrical confinement effects in Bi2_{2}Sr2_{2}CaCu2_{2}O8+δ_{8 +\delta} mesoscopic vortex-matter with edge-to-surface ratio of 7127-12%. Samples have in-plane square and circular edges, 30\,μ\mum widths, and 2μ\sim 2\,\mum thickness. Direct vortex imaging reveals the compact planes of the structure align with the sample edge by introducing topological defects. The defects density is larger for circular than for square edges. Molecular dynamics simulations suggest this density is not an out-of-equilibrium property but rather determined by the geometrical confinement.

Keywords

Cite

@article{arxiv.1409.7305,
  title  = {Geometrical confinement effects in layered mesoscopic vortex-matter},
  author = {N. R. Cejas Bolecek and M. I. Dolz and A. Kolton and H. Pastoriza and C. J. van der Beek and M. Konczykowski and M. Menghini and F. de la Cruz and G. Nieva and Y. Fasano},
  journal= {arXiv preprint arXiv:1409.7305},
  year   = {2020}
}

Comments

accepted in Journal of Low Temperature Physics

R2 v1 2026-06-22T06:05:52.077Z