Inhomogeneous Superconductivity Onset in FeSe Studied by Transport Properties

Author:

Grigoriev Pavel D.123ORCID,Kochev Vladislav D.2ORCID,Orlov Andrey P.45ORCID,Frolov Aleksei V.4ORCID,Sinchenko Alexander A.46

Affiliation:

1. L.D. Landau Institute for Theoretical Physics, 142432 Chernogolovka, Russia

2. Department of Theoretical Physics and Quantum Technologies, National University of Science and Technology ”MISiS”, 119049 Moscow, Russia

3. P.N. Lebedev Physical Institute of RAS, 119991 Moscow, Russia

4. Kotel’nikov Institute of Radioengineering and Electronics of RAS, 125009 Moscow, Russia

5. Institute of Nanotechnology of Microelectronics of RAS, 115487 Moscow, Russia

6. Laboratoire de Physique des Solides, Universite Paris-Saclay, 91405 Orsay, France

Abstract

Heterogeneous superconductivity onset is a common phenomenon in high-Tc superconductors of both the cuprate and iron-based families. It is manifested by a fairly wide transition from the metallic to zero-resistance states. Usually, in these strongly anisotropic materials, superconductivity (SC) first appears as isolated domains. This leads to anisotropic excess conductivity above Tc, and the transport measurements provide valuable information about the SC domain structure deep within the sample. In bulk samples, this anisotropic SC onset gives an approximate average shape of SC grains, while in thin samples, it also indicates the average size of SC grains. In this work, both interlayer and intralayer resistivity were measured as a function of temperature in FeSe samples of various thicknesses. To measure the interlayer resistivity, FeSe mesa structures oriented across the layers were fabricated using FIB. As the sample thickness decreases, a significant increase in superconducting transition temperature Tc is observed: Tc raises from 8 K in bulk material to 12 K in microbridges of thickness ∼40 nm. We applied analytical and numerical calculations to analyze these and earlier data and find the aspect ratio and size of the SC domains in FeSe consistent with our resistivity and diamagnetic response measurements. We propose a simple and fairly accurate method for estimating the aspect ratio of SC domains from Tc anisotropy in samples of various small thicknesses. The relationship between nematic and superconducting domains in FeSe is discussed. We also generalize the analytical formulas for conductivity in heterogeneous anisotropic superconductors to the case of elongated SC domains of two perpendicular orientations with equal volume fractions, corresponding to the nematic domain structure in various Fe-based superconductors.

Funder

NUST "MISIS"

State assignment

RFBR grant

Foundation for the Advancement of Theoretical Physics and Mathematics ”Basis”

Publisher

MDPI AG

Subject

General Materials Science

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