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August 20, 2025Annalen der Physik0 citations

Two‐Band Superconductivity and Transition Temperature Limited by Thermal Fluctuations in Ruddlesden–Popper Nickelates at Ambient and High Pressures

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ETE. F. Talantsev

Key Points

  • The presence of thermal fluctuations limits the transition temperature and superconductivity in nickelates.
  • Critical current density and penetration depth indicate significant thermal effects in La3-xPrxNi2O7-d films.
  • Observational analysis of two-band models supports findings in Ruddlesden–Popper nickelate films under varying pressure.
  • Implications point to the necessity of exploring thermal effects in optimizing superconductive materials.

Abstract

Abstract Recently, two research groups reported the observation of ambient‐pressure superconductivity in few‐nanometers‐thick La 3‐x Pr x Ni 2 O 7‐δ (x = 0.0, 0.15, and 1.0) films with the onset transition temperature and zero resistance temperature . In this study, the reported self‐field critical current density and upper critical field for these films are analyzed. The La 3‐x Pr x Ni 2 O 7‐δ films are find to exhibit a large in‐plane London penetration depth, , and the Ginzburg–Landau parameter . The deduced values are within the uncertainty range for the independently reported . Such large values of explain the wide resistive transition in La 3‐x Pr x Ni 2 O 7‐δ films, because a large implies low superfluid density () and therefore large thermal fluctuations. Consequently, it is find that the calculated phase fluctuation temperature satisfies the inequality . It is also find that the data of and fit well to those of two‐gap models, of which the two‐band s ‐wave model (for which the ratios of the superconducting energy gap Δ(0) to the critical temperature and for the larger and smaller bands, respectively) is preferred. In addition, it is shown that bulk, highly compressed Ruddlesden–Popper nickelates La n+1 Ni n O 3n+1 ( n = 2,3) and ambient‐pressure La n+1 Ni n O 2n+2 ( n = 5) thin film demonstrate evidence of two‐band superconductivity.

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Cite This Study

E. F. Talantsev (2025) studied this question.

synapsesocial.com/papers/68af495fad7bf08b1ead5674https://doi.org/10.1002/andp.202500293
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