English

Anisotropy induced vortex lattice rearrangement in CaKFe$_4$As$_4$

Superconductivity 2019-05-15 v1

Abstract

The magnetic penetration depth anisotropy γλ=λc/λab\gamma_\lambda=\lambda_{c}/\lambda_{ab} (λab\lambda_{ab} and λc\lambda_{c} are the in-plane and the out-of-plane components of the magnetic penetration depth) in a CaKFe4_4As4_4 single crystal sample (the critical temperature Tc35T_{\rm c}\simeq 35 K) was studied by means of muon-spin rotation (μ\muSR). γλ\gamma_\lambda is almost temperature independent for T20T\lesssim 20 K (γλ1.9\gamma_\lambda\simeq 1.9) and it reaches 3.0\simeq 3.0 by approaching TcT_{\rm c}. The change of γλ\gamma_\lambda induces the corresponding rearrangement of the flux line lattice (FLL), which is clearly detected via enhanced distortions of the FLL μ\muSR response. Comparison of γλ\gamma_\lambda with the anisotropy of the upper critical field (γHc2\gamma_{H_{\rm c2}}) studied in Phys. Rev B {\bf 94}, 064501 (2016), reveals that γλ\gamma_\lambda is systematically higher than γHc2\gamma_{H_{\rm c2}} at low-temperatures and approaches γHc2\gamma_{H_{\rm c2}} for TTcT \rightarrow T_{\rm c}. The anisotropic properties of λ\lambda are explained by the multi-gap nature of superconductivity in CaKFe4_4As4_4 and are caused by anisotropic contributions of various bands to the in-plane and the out-of-plane components of the superfluid density.

Keywords

Cite

@article{arxiv.1902.02268,
  title  = {Anisotropy induced vortex lattice rearrangement in CaKFe$_4$As$_4$},
  author = {Rustem Khasanov and William R. Meier and Sergey L. Bud'ko and Hubertus Luetkens and Paul C. Canfield and Alex Amato},
  journal= {arXiv preprint arXiv:1902.02268},
  year   = {2019}
}

Comments

6 pages, 4 figures