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Evolution of the pseudogap temperature dependence in YBa2Cu3O7-δ films under the influence of a magnetic field

2024/01/02 by E. V. Petrenko, A. V. Terekhov, Petrenko, E. V. +15
Physics and Astronomy · #FOS: Physical sciences #Magnetic properties of thin films #Physics of Superconductivity and Magnetism #Superconductivity (cond-mat.supr-con) #Theoretical and Computational Physics

paper · pdf · doi:10.48550/arxiv.2401.01413

openalex publication_date 2024/01/02 · openalex created_date 2024/01/05 · openalex updated_date 2026/07/28

Abstract

The evolution of the temperature dependence of pseudogap Δ*(T) in optimally doped (OD) YBa2Cu3O7-δ (YBCO) films with Tc = 88.7 K under the influence of a magnetic field B up to 8 T has been studied in detail. It has been established that the shape of Δ*(T) for various B over the entire range from the pseudogap opening temperature T* to T01, below which superconducting fluctuations occur, has a wide maximum at the BEC-BCS crossover temperature Tpair, which is typical for OD films and untwinned YBCO single crystals. T* was shown to be independent on B, whereas Tpair shifts to the low temperature region along with increase of B, while the maximum value of Δ*(Tpair) remains practically constant regardless of B. It was revealed that as the field increases, the low-temperature maximum near the 3D-2D transition temperature T0 is blurred and disappears at B > 5 T. Moreover, above the Ginzburg temperature TG, which limits superconducting fluctuations from below, at B > 0.5 T, a minimum appears on Δ*(T) at Tmin, which becomes very pronounced with a further increase in the field. As a result, the overall value of Δ*(T) decreases noticeably most likely due to pair-breaking affect of a magnetic field. A comparison of Δ*(T) near Tc with the Peters-Bauer theory shows that the density of fluctuating Cooper pairs actually decreases from <> ≈ 0.31 at B = 0 to <> ≈ 0.28 in the field 8 T. The observed behavior of Δ*(T) around Tmin is assumed to be due to the influence of a two-dimensional vortex lattice created by the magnetic field, which prevents the formation of fluctuating Cooper pairs near Tc.

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