Vortex matter and strong pinning in underdoped PrFeAs(O,F) with atomic-sized defects

Fuente: arXiv
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Main Authors: Sadakov, Andrey V., Vlasenko, Vladimir A., Levakhova, A. Yu., Zhuvagin, I. V., Fomina, E. M., Prudkoglyad, V. A., Tsvetkov, A. Y., Usoltsev, A. S., Zhigadlo, N. D.
Format: Preprint
Published: 2025
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author Sadakov, Andrey V.
Vlasenko, Vladimir A.
Levakhova, A. Yu.
Zhuvagin, I. V.
Fomina, E. M.
Prudkoglyad, V. A.
Tsvetkov, A. Y.
Usoltsev, A. S.
Zhigadlo, N. D.
author_facet Sadakov, Andrey V.
Vlasenko, Vladimir A.
Levakhova, A. Yu.
Zhuvagin, I. V.
Fomina, E. M.
Prudkoglyad, V. A.
Tsvetkov, A. Y.
Usoltsev, A. S.
Zhigadlo, N. D.
contents We present a comprehensive investigation of the field-dependent critical current density and pinning force, combined with a detailed analysis of the nanostructural defect landscape in single crystal of underdoped PrFeAs(O,F) superconductor. Our study demonstrates that for both in-plane and out-of-plane magnetic field orientations critical current density exhibits a strong pinning regime in intermediate fields across the entire temperature range. The dominant contribution to pinning originates from oxygen-to-fluorine substitutional defects, oxygen vacancies, which all act as point defects via a quasiparticle mean free path fluctuation mechanism. Scanning transmission electron microscope studies did not reveal any volume or surface defect types within the lattice.
format Preprint
id arxiv_https___arxiv_org_abs_2510_10264
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Vortex matter and strong pinning in underdoped PrFeAs(O,F) with atomic-sized defects
Sadakov, Andrey V.
Vlasenko, Vladimir A.
Levakhova, A. Yu.
Zhuvagin, I. V.
Fomina, E. M.
Prudkoglyad, V. A.
Tsvetkov, A. Y.
Usoltsev, A. S.
Zhigadlo, N. D.
Superconductivity
We present a comprehensive investigation of the field-dependent critical current density and pinning force, combined with a detailed analysis of the nanostructural defect landscape in single crystal of underdoped PrFeAs(O,F) superconductor. Our study demonstrates that for both in-plane and out-of-plane magnetic field orientations critical current density exhibits a strong pinning regime in intermediate fields across the entire temperature range. The dominant contribution to pinning originates from oxygen-to-fluorine substitutional defects, oxygen vacancies, which all act as point defects via a quasiparticle mean free path fluctuation mechanism. Scanning transmission electron microscope studies did not reveal any volume or surface defect types within the lattice.
title Vortex matter and strong pinning in underdoped PrFeAs(O,F) with atomic-sized defects
topic Superconductivity
url https://arxiv.org/abs/2510.10264