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Proximity effects in the charge density wave order and superconductivity in single-layer NbSe<sub>2</sub>

ORAL

Abstract

Collective electronic states such as the charge density wave (CDW) order and superconductivity respond dramatically to external perturbations. In two-dimensional materials hosting such states, the closeness to unavoidable supporting substrates may lead to significant changes in their properties. Here we explore the impact of proximity effects on the CDW and superconducting states in single-layer NbSe2. We performed the electronic characterization of single-layer NbSe2 on several substrates of opposite metallicity by means of STM/STS at 350 mK, ARPES and 4-point probe transport measurements. In particular, we have epitaxially grown single-layer NbSe2 by MBE on two different metals, Au(111) and BLG/SiC(0001), and two insulators, bulk WSe2 and monolayer h-BN/Ir(111). While both phases disappear on Au(111), they persist on BLG/SiC. The fate of the CDW and superconducting phases is more intricate on insulating substrates, which are largely affected, however, despite of the electronic decoupling of the 2D superconductor with the substrate states.

Presenters

  • Wen Wan

    Donostia International Physics Center

Authors

  • Wen Wan

    Donostia International Physics Center

  • Paul Dreher

    Donostia International Physics Center

  • Alla Chikina

    Department of Physics and Astronomy, Aarhus University

  • Haojie Guo

    Dpto. Física de la Materia Condensada, Universidad Autónoma de Madrid

  • Rishav Harsh

    Donostia International Physics Center

  • Marco Bianchi

    Department of Physics and Astronomy, Aarhus University

  • Marco Gobbi

    CIC Nanogune

  • Jose-Maria Gomez-Rodriguez

    Dpto. Física de la Materia Condensada, Universidad Autónoma de Madrid

  • Antonio Javier Martinez-Galera

    Dpto. Física de la Materia Condensada, Universidad Autónoma de Madrid

  • Philip Hofmann

    Department of Physics and Astronomy, Aarhus University

  • Jill A. Miwa

    Department of Physics and Astronomy, Aarhus University

  • Miguel Ugeda

    Donostia International Physics Center