English

Anisotropic physical properties and large critical current density in KCa${_2}$Fe${_4}$As${_4}$F${_2}$ single crystal

Superconductivity 2020-10-28 v1

Abstract

We present a systematic study of electrical resistivity, Hall coefficient, magneto-optical imaging, magnetization, and STEM analyses of KCa2{_2}Fe4{_4}As4{_4}F2{_2} single crystals. Sharp diamagnetic transition and magneto-optical imaging reveal homogeneity of single crystal and prominent Bean-like penetrations of vortices. Large anisotropy of electrical resistivity, with ρc/ρab{\rho _c / \rho _{ab}} > 100, and semiconductor-like ρc{\rho _c} suggest that the electronic state is quasi two-dimensional. Hall effect measurements indicate that KCa2{_2}Fe4{_4}As4{_4}F2{_2} is a multiband system with holes as main carriers. Magnetization measurements reveal significantly larger Jc_c compared with that in other iron-based superconductors with different values of Jc_c depending on the direction of magnetic field. Origin of these Jc_c characteristics is discussed based on microstructural observations using STEM. In addition, further enhancement of Jc_c in KCa2{_2}Fe4{_4}As4{_4}F2{_2} for future application is demonstrated in terms of heavy-ion irradiation.

Keywords

Cite

@article{arxiv.2006.04478,
  title  = {Anisotropic physical properties and large critical current density in KCa${_2}$Fe${_4}$As${_4}$F${_2}$ single crystal},
  author = {Sunseng Pyon and Yuto Kobayashi and Ayumu Takahashi and Wenjie Li and Teng Wang and Gang Mu and Ataru Ichinose and Tadashi Kambara and Atsushi Yoshida and Tsuyoshi Tamegai},
  journal= {arXiv preprint arXiv:2006.04478},
  year   = {2020}
}

Comments

23 pages, 10 figures