Anisotropy of flux pinning properties in superconducting (Li,Fe)OHFeSe thin films

Author:

Hänisch JensORCID,Huang Yulong,Li DongORCID,Yuan Jie,Jin KuiORCID,Dong XiaoliORCID,Talantsev EvgenyORCID,Holzapfel BernhardORCID,Zhao Zhongxian

Abstract

Abstract The electrical transport properties of (Li,Fe)OHFeSe films have been investigated in detail. The sharply textured films, prepared by matrix-assisted hydrothermal epitaxy (MHE) on LaAlO3, show a zero-resistance critical temperature T c of ∼42 K, J c values well above 1 MA cm−2 at low temperatures, and a maximum pinning force density F P of ∼100 GN m−3 at 4 K. The activation energy U 0 for thermal depinning of flux lines has been resolved for low magnetic fields, it agrees well with literature data. The coherence lengths and penetration depth were estimated via upper critical field B c2 and self-field J c, respectively, to be ξ ab ∼ 2.7 nm, ξ c = 0.24 nm, and λ ab ∼ 160–200 nm. The layered crystal structure leads to highly anisotropic and two-dimensional electrical properties, including trapping and lock-in of vortices.

Funder

National Key Research and Development Program of China

Strategic Priority Research Program and Key Research Program of Frontier Sciences of the Chi-nese Academy of Sciences

state assignment of Minobrnauki of Russia

Act 211 Government of the Russian Federation

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

Materials Chemistry,Electrical and Electronic Engineering,Metals and Alloys,Condensed Matter Physics,Ceramics and Composites

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