Latent superconductivity at parallel interfaces in a superlattice dominated by another collective quantum phase

V. N. Moura, Davi S. Dantas, G. A. Farias, A. Chaves, and M. V. Milošević
Phys. Rev. B 106, 014516 – Published 22 July 2022

Abstract

We theoretically examine behavior of superconductivity at parallel interfaces separating the domains of another dominant collective excitation, such as charge density waves or spin density waves. Due to their competitive coupling in a two-component Ginzburg-Landau model, suppression of the dominant order parameter at the interfacial planes allows for nucleation of the (hidden) superconducting order parameter at those planes. In such a case, we demonstrate how the number of the parallel interfacial planes and the distance between them are linked to the number and the size of the emerging superconducting gaps in the system, as well as the versatility and temperature evolution of the possible superconducting phases. These findings bear relevance to a broad selection of known layered superconducting materials, as well as to further design of artificial (e.g., oxide) superlattices, where the interplay between competing order parameters paves the way towards otherwise unattainable superconducting states, some with enhanced superconducting critical temperature.

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  • Received 14 October 2021
  • Revised 6 May 2022
  • Accepted 6 July 2022

DOI:https://doi.org/10.1103/PhysRevB.106.014516

©2022 American Physical Society

Physics Subject Headings (PhySH)

Condensed Matter, Materials & Applied Physics

Authors & Affiliations

V. N. Moura1,*, Davi S. Dantas1, G. A. Farias1, A. Chaves1,2, and M. V. Milošević2,†

  • 1Departamento de Física, Universidade Federal do Ceará, Caixa Postal 6030, Campus do Pici, 60455-900 Fortaleza, Ceará, Brazil
  • 2Department of Physics, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium

  • *victornocrato@fisica.ufc.br
  • milorad.milosevic@uantwerpen.be

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Issue

Vol. 106, Iss. 1 — 1 July 2022

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