Projects per year
Description
Abstract
Sheet resistance of a thin superconducting amorphous indium oxide film as a function of temperature and perpendicular magnetic field. Increasing field leads to the apparent destruction of the superconducting state and a transition to a metallic high field state.
Description
DC sheet resistance of a thin amorphous indium oxide film, measured as a function of temperature at a range of magnetic fields to show a transition from a superconducting state to an metallic state. Each file gives sheet resistance as a function of temperature at a unique value of magnetic field applied perpendicular to the film.
Funding information
Sponsorship: This work was supported by the National Science Foundation under Grant Nos. DMR-1209578 and DMR-1704456. Portions of this work were conducted in the Minnesota Nano Center, which is supported by the National Science Foundation through the National Nano Coordinated Infrastructure Network (NNCI) under Award Number ECCS-1542202.
Sheet resistance of a thin superconducting amorphous indium oxide film as a function of temperature and perpendicular magnetic field. Increasing field leads to the apparent destruction of the superconducting state and a transition to a metallic high field state.
Description
DC sheet resistance of a thin amorphous indium oxide film, measured as a function of temperature at a range of magnetic fields to show a transition from a superconducting state to an metallic state. Each file gives sheet resistance as a function of temperature at a unique value of magnetic field applied perpendicular to the film.
Funding information
Sponsorship: This work was supported by the National Science Foundation under Grant Nos. DMR-1209578 and DMR-1704456. Portions of this work were conducted in the Minnesota Nano Center, which is supported by the National Science Foundation through the National Nano Coordinated Infrastructure Network (NNCI) under Award Number ECCS-1542202.
Date made available | 2019 |
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Publisher | Data Repository for the University of Minnesota |
Date of data production | Mar 14 2018 - Jun 21 2018 |
Projects
- 3 Finished
-
Super-Insulator Transitions
Goldman, A. M.
THE NATIONAL SCIENCE FOUNDATION
8/1/17 → 7/31/21
Project: Research project
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NNCI: Minnesota, Enabling Nanotechnology Excellence in t
Koester, S. J. & Campbell, S. A.
THE NATIONAL SCIENCE FOUNDATION
9/15/15 → 5/31/22
Project: Research project
-
Materials World Network: Properties of Electrostatically
Goldman, A. M.
THE NATIONAL SCIENCE FOUNDATION
9/1/12 → 8/31/16
Project: Research project
Research output
- 1 Article
-
Infinite-randomness fixed point of the quantum superconductor-metal transitions in amorphous thin films
Lewellyn, N. A., Percher, I. M., Nelson, J., Garcia Barriocanal, J., Volotsenko, I., Frydman, A., Vojta, T. & Goldman, A. M., Feb 25 2019, In: Physical Review B. 99, 5, 054515.Research output: Contribution to journal › Article › peer-review
Open Access11 Scopus citations