Two-dimensional superconductivity and violation of Pauli paramagnetic limit in MBE-grown Al nanofilms

ORAL

Abstract

We have performed low-temperature transport measurements on Al nanofilms on GaAs substrates prepared by molecular beam epitaxy (MBE) with as-grown thicknesses of 3 nm, 3.5 nm, and 4 nm. Such MBE-grown nanofilms all show the Berezinskii-Kosterlitz-Thouless transition, which is compelling evidence for two-dimensional superconductivity, with enhanced transition temperatures (≈2.3 K) compared to that of bulk Al (1.2 K). When the magnetic field is applied parallel to the plane of the Al nanofilms, we measure the upper critical magnetic field Hc∥ by the mid-points of resistive transitions at different temperatures T . In this way, we can estimate Hc∥(T=0). It is found that Hc∥(T=0) increases with decreasing film thickness. Interestingly, for the thinnest device, Hc∥(T=0) exceeds the Pauli paramagnetic limit. Such experimental results can be ascribed to spin-orbit coupling effects on superconductivity, even though Al has a low atomic mass.

*This work was funded by the Ministry of Science and Technology (MOST), Taiwan (grant numbers: MOST 108-2112-M-002-014-MY2, MOST 107-2627-E-002-002, and MOST 108-2622-8-002-016) and National Taiwan University (grant number: 108L892101)

–

Presenters

  • Chi-Te Liang

    • National Taiwan University
    • Physics, National Taiwan University

Authors

  • Chi-Te Liang

    • National Taiwan University
    • Physics, National Taiwan University
  • Ching-Chen Yeh

    • Physics, National Taiwan University
  • Guan-Ming Su

    • Physics, National Taiwan University
  • Ankit Kumar

    • Physics, National Taiwan University
  • Biyi Wu

    • Physics, National Taiwan University
  • Yen-Ting Fan

    • Electronics Engineering, National Chiao-Tung University
  • Sheng-Di Lin

    • Electronics Engineering, National Chiao-Tung University
  • Lee Chow

    • Physics, University of Central Florida