Comparative Analysis of the Irradiation with Medium Fluences of High-Energy Electrons and Pr Doping on the Fluctuation Conductivity of YBa2Cu3O7–δ Single Crystals

Author:

Khadzhai George1ORCID,Goulatis Ioannis2,Chroneos Alexander23ORCID,Feher Alexander4,Vovk Ruslan15

Affiliation:

1. V.N. Karazin Kharkiv National University, Svoboda Sq. 4, 61022 Kharkiv, Ukraine

2. Department of Electrical and Computer Engineering, University of Thessaly, 38334 Volos, Greece

3. Department of Materials, Imperial College London, London SW7 2BP, UK

4. Centre of Low Temperature Physics, Faculty of Science, P.J. Safarik University, Park Angelinum 9, 041 54 Kosice, Slovakia

5. The Department of Mathematics and Physics, Ukrainian State University of Railway Transport, Feierbakh Sq. 7, 61050 Kharkiv, Ukraine

Abstract

Medium-fluence fast electron irradiation (1019 e/cm2 to 1020 e/cm2) or the changes in the praseodymium concentration in the range of 0.0 ≤ z ≤ 0.5 on the excess conductivity of YBa2Cu3O7–δ single crystals ware investigated. These can lead to a wider range of the temperature interval of excess conductivity which narrows the interval of linearity in the ab plane. At fluences 0 ≤ Φ ≤ 6.5 × 1019 e/cm2, there was a threefold increase in the transverse coherence length ξc(0) with an increase in Φ of more than four times as the praseodymium concentration increased to z ≈ 0.42. The two-dimensional–three-dimensional (2D–3D) crossover point shifted upward in temperature. Conversely, to irradiation with low fluences (Φ ≤ 1019 e/cm2) or low praseodymium doping (z ≤ 0.39), irradiation with medium fluences or high praseodymium doping led to a non-monotonic dependence of ξc(0) on the irradiation fluence, with characteristic maxima at Φ~(7–8) × 1019 e/cm2 and z ≈ 0.42, likely due to the suppression of the superconducting characteristics.

Publisher

MDPI AG

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