4.3 Article

Quasi-two-dimensional superconductivity at oxide heterostructures

期刊

ACTA PHYSICA SINICA
卷 72, 期 9, 页码 -

出版社

CHINESE PHYSICAL SOC
DOI: 10.7498/aps.72.20230044

关键词

oxide; interface superconductivity; cuprate superconductor; two-dimensional electron gas

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Oxide interfaces exhibit intriguing phenomena, such as broken symmetry, lattice mismatch, charge transfer, and spatial confinement. The interface superconductivity in oxide heterostructures has attracted extensive attention due to its rich physical connotations. It not only provides alternative research platforms for exploring new superconductors and investigating superconducting mechanisms, but also opens up possibilities for future electronic device applications. Recent developments in heteroepitaxial techniques and accurate characterization methods have led to the discovery of quasi-two-dimensional interface superconductivity in various oxide heterostructures, revealing novel quantum phenomena and advancing the field of condensed matter physics. This review focuses on the quasi-two-dimensional superconductivity at oxide interfaces, using examples such as LaAlO3/SrTiO3 and copper oxides like La2CuO4/La1.56Sr0.44CuO4 to summarize the novel physical phenomena associated with interface superconductivity in complex oxide heterostructures. The remaining challenges and future prospects of interface superconductivity are also discussed.
Oxide interfaces manifest many fascinating phenomena with synergetic correlations among multiple degrees of freedom, including the interplay of broken symmetry, lattice mismatch, charge transfer, spatial confinement. In particular, the interface superconductivity in oxide heterostructure has attracted extensive attention due to the rich underlying physical connotations. The interfaces not only provide alternative research platforms with respect to the bulk material counterpart for exploring new superconductors and investigating superconducting mechanisms, but also create new opportunities for applying superconductors to future electronic devices. In recent years, owing to the rapid development of heteroepitaxial techniques and accurate characterization methods, researchers have found quasi-two-dimensional interface superconductivity in various oxide heterostructures and revealed numerous novel quantum phenomena associated with interface superconductivity, which not only promotes the development of condensed matter physics, but also lays important foundation for the practical application of interface superconductivity. In this brief review, we mainly focus on the quasi-two-dimensional superconductivity at oxide interface. Taking the typical quasi-two-dimensional superconductivity at the LaAlO3/SrTiO3 interface and copper oxides such as La2CuO4/La1.56Sr0.44CuO4 for example, we summarize and examine some novel physical phenomena with interface superconductivity in complex oxide hetero-structures. Then we address the related problems that remain to be solved, and finally we prospect the possible future development of the interface superconductivity.

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