Temporal Evolution of Defects and Related Electric Properties in He-Irradiated YBa2Cu3O7−δ Thin Films

Author:

Keppert Sandra1ORCID,Aichner Bernd2ORCID,Rohringer Philip2,Bodea Marius-Aurel1,Müller Benedikt3,Karrer Max3,Kleiner Reinhold3ORCID,Goldobin Edward3ORCID,Koelle Dieter3ORCID,Pedarnig Johannes D.1ORCID,Lang Wolfgang2ORCID

Affiliation:

1. Institute of Applied Physics, Johannes Kepler University Linz, 4040 Linz, Austria

2. Faculty of Physics, University of Vienna, 1090 Vienna, Austria

3. Physikalisches Institut, Center for Quantum Science (CQ) and LISA+, University of Tübingen, 72076 Tübingen, Germany

Abstract

Thin films of the superconductor YBa2Cu3O7−δ (YBCO) were modified by low-energy light-ion irradiation employing collimated or focused He+ beams, and the long-term stability of irradiation-induced defects was investigated. For films irradiated with collimated beams, the resistance was measured in situ during and after irradiation and analyzed using a phenomenological model. The formation and stability of irradiation-induced defects are highly influenced by temperature. Thermal annealing experiments conducted in an Ar atmosphere at various temperatures demonstrated a decrease in resistivity and allowed us to determine diffusion coefficients and the activation energy ΔE=(0.31±0.03) eV for diffusive oxygen rearrangement within the YBCO unit cell basal plane. Additionally, thin YBCO films, nanostructured by focused He+-beam irradiation into vortex pinning arrays, displayed significant commensurability effects in magnetic fields. Despite the strong modulation of defect densities in these pinning arrays, oxygen diffusion during room-temperature annealing over almost six years did not compromise the signatures of vortex matching, which remained precisely at their magnetic fields predicted by the pattern geometry. Moreover, the critical current increased substantially within the entire magnetic field range after long-term storage in dry air. These findings underscore the potential of ion irradiation in tailoring the superconducting properties of thin YBCO films.

Funder

Austrian Science Fund

German Research Foundation

COST

Publisher

MDPI AG

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