2023•Advanced ScienceOpen access

Superconductivity at Interfaces in Cuprate‐Manganite Superlattices (Adv. Sci. 21/2023)

Nicolas Bonmassar, G. Christiani, Tobias Heil, Gennady Yu. Logvenov, Y. Eren Suyolcu, Peter A. van Aken

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Abstract

Superconducting Cuprate-Manganite Superlattices Complex oxide superlattices consisting of superconducting cuprates and two chemically different insulating manganites show different critical temperatures. The chemical stability of the parent structure is key to enable high temperature superconductivity with structurally and chemically sharp interfaces between the respective ultra-thin layers. More details can be found in article number 2301495 by Nicolas Bonmassar, Y. Eren Suyolcu, and co-workers.

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Superconducting Cuprate-Manganite Superlattices Complex oxide superlattices consisting of superconducting cuprates and two chemically different insulating manganites show different critical temperatures. The chemical stability of the parent structure is key to enable high temperature superconductivity with structurally and chemically sharp interfaces between the respective ultra-thin layers. More details can be found in article number 2301495 by Nicolas Bonmassar, Y. Eren Suyolcu, and co-workers.

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Available abstract

Superconducting Cuprate-Manganite Superlattices Complex oxide superlattices consisting of superconducting cuprates and two chemically different insulating manganites show different critical temperatures. The chemical stability of the parent structure is key to enable high temperature superconductivity with structurally and chemically sharp interfaces between the respective ultra-thin layers. More details can be found in article number 2301495 by Nicolas Bonmassar, Y. Eren Suyolcu, and co-workers.

Key concepts: Manganite, Cuprate, Superlattice, Superconductivity, Condensed matter physics, Materials science, Copper oxide, Oxide

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