Tuning the ground state of cuprate superconducting thin films by nanofaceted substratesShow others and affiliations
2024 (English)In: Communications Materials, E-ISSN 2662-4443, Vol. 5, no 1, article id 146Article in journal (Refereed) Published
Abstract [en]
Anisotropic transport properties have been assessed in a number of cuprate superconductors, providing evidence for a nematic state. We have recently shown that in ultra-thin YBa2Cu3O7−δ films, where nematicity is induced via strain engineering, there is a suppression of charge density wave scattering along the orthorhombic a-axis and a concomitant enhancement of strange metal behavior along the b-axis. Here we develop a microscopic model, that is based on the strong interaction between the substrate facets and the thin film, to account for the unconventional phenomenology. Based on the atomic force microscopy imaging of the substrates’ surface, the model is able to predict the absence (presence) of nematicity and the resulting transport properties in films grown on SrTiO3 (MgO) substrates. Our result paves the way to new tuning capabilities of the ground state of high-temperature superconductors by substrate engineering.
Place, publisher, year, edition, pages
Springer Nature , 2024. Vol. 5, no 1, article id 146
Keywords [en]
Barium compounds; Charge density; Charge density waves; Copper compounds; Ground state; High temperature superconductors; Magnesia; Strontium titanates; Substrates; Superconducting films; Thin films; Titanium compounds; Yttrium barium copper oxides; Anisotropic transport; Charge-density-waves; Cuprates; Cuprates superconductors; Microscopic models; Nematic state; Strain engineering; Strange metals; Ultra-thin; Wave scattering; Transport properties
National Category
Physical Sciences
Identifiers
URN: urn:nbn:se:ri:diva-75022DOI: 10.1038/s43246-024-00582-5Scopus ID: 2-s2.0-85200920052OAI: oai:DiVA.org:ri-75022DiVA, id: diva2:1895619
Note
We acknowledge support by the Swedish Research Council (VR), under the Projects 2018-04658 (F.L.), 2020-04945 (R.A.) and 2020-05184 (T.B.), by the University of Rome Sapienza, under the projects Ateneo 2021 (RM12117A4A7FD11B), Ateneo 2022 (RM12218162CF9D05), Ateneo 2023 (RM123188E830D258) (G.M., C.D.C., M.G., S.C.), by the Italian Ministero dell\u2019Universit\u00E0 e della Ricerca, under the PNRR MUR project PE0000023-NQSTI (M.G., S.C.), by the Deutsche Forschungsgemeinschaft, under SE 806/20-1 (G.S.).
2024-09-062024-09-062025-09-23Bibliographically approved