Data for the publication: Reconfigurable superconducting vortex pinning potential for magnetic disks in hybrid structures
This dataset contains raw data and images from Marchiori, E. et al. Reconfigurable superconducting vortex pinning potential for magnetic disks in hybrid structures. Sci. Rep. 7, 45182; doi: 10.1038/srep45182 (2017).
Cite this dataset as:
Marchiori, E.,
2017.
Data for the publication: Reconfigurable superconducting vortex pinning potential for magnetic disks in hybrid structures.
Bath: University of Bath Research Data Archive.
Available from: https://doi.org/10.15125/BATH-00340.
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Data
DataAccess.zip
application/zip (586MB)
Creators
Estefani Marchiori
University of Bath
Contributors
Peter Curran
Researcher
University of Bath
Jangyong Kim
Researcher
University of Leeds
Nathan Satchell
Researcher
University of Leeds
Gavin Burnell
Researcher
University of Leeds
Simon Bending
Researcher
University of Bath
University of Bath
Rights Holder
Documentation
Additional information:
Further information can be found in the associated article: https://doi.org/10.1038/srep45182
Methodology link:
Marchiori, E., Curran, P. J., Kim, J., Satchell, N., Burnell, G., and Bending, S. J., 2017. Reconfigurable superconducting vortex pinning potential for magnetic disks in hybrid structures. Scientific Reports, 7(1). Available from: https://doi.org/10.1038/srep45182.
Documentation Files
Data_description.txt
text/plain (5kB)
Funders
Engineering and Physical Sciences Research Council
https://doi.org/10.13039/501100000266
Generation, Imaging and Control of Novel Coherent Electronic States in Artificial Ferromagnetic-Superconducting Hybrid Metamaterials and Devices
EP/J010626/1
Publication details
Publication date: 2017
by: University of Bath
Version: 1
DOI: https://doi.org/10.15125/BATH-00340
URL for this record: https://researchdata.bath.ac.uk/id/eprint/340
Related papers and books
Marchiori, E., Curran, P. J., Kim, J., Satchell, N., Burnell, G., and Bending, S. J., 2017. Reconfigurable superconducting vortex pinning potential for magnetic disks in hybrid structures. Scientific Reports, 7(1). Available from: https://doi.org/10.1038/srep45182.
Contact information
Please contact the Research Data Service in the first instance for all matters concerning this item.
Contact person: Estefani Marchiori
Faculty of Science
Physics