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Local switching of two-dimensional superconductivity using the ferroelectric field effect

Author

Listed:
  • K. S. Takahashi

    (DPMC, University of Geneva)

  • M. Gabay

    (Université de Paris-Sud)

  • D. Jaccard

    (DPMC, University of Geneva)

  • K. Shibuya

    (University of Tokyo)

  • T. Ohnishi

    (University of Tokyo)

  • M. Lippmaa

    (University of Tokyo)

  • J.-M. Triscone

    (DPMC, University of Geneva)

Abstract

A model oxide system based on high-quality heterostructures allows the ferroelectric field effect approach to be studied — including a switch between superconducting and normal modes.

Suggested Citation

  • K. S. Takahashi & M. Gabay & D. Jaccard & K. Shibuya & T. Ohnishi & M. Lippmaa & J.-M. Triscone, 2006. "Local switching of two-dimensional superconductivity using the ferroelectric field effect," Nature, Nature, vol. 441(7090), pages 195-198, May.
  • Handle: RePEc:nat:nature:v:441:y:2006:i:7090:d:10.1038_nature04731
    DOI: 10.1038/nature04731
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    Cited by:

    1. Guanghui Cheng & Meng-Hsien Lin & Hung-Ying Chen & Dongli Wang & Zheyan Wang & Wei Qin & Zhenyu Zhang & Changgan Zeng, 2024. "Reversible modulation of superconductivity in thin-film NbSe2 via plasmon coupling," Nature Communications, Nature, vol. 15(1), pages 1-7, December.

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