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One dimensional edge localized YSR states in CrCl₃ on NbSe₂

Jan P. Cuperus1, Arnold H. Kole1*, Andrés R. Botello-Méndez1, Zeila Zanolli1*, Daniel Vanmaekelbergh1, Ingmar Swart1

1 Condensed Matter and Interfaces, Debye Institute for Nanomaterials Science, Utrecht University, The Netherlands

* Corresponding authors emails: materialscloud@ahkole.nl, z.zanolli@uu.nl
DOI10.24435/materialscloud:1b-aa [version v1]

Publication date: Jan 22, 2025

How to cite this record

Jan P. Cuperus, Arnold H. Kole, Andrés R. Botello-Méndez, Zeila Zanolli, Daniel Vanmaekelbergh, Ingmar Swart, One dimensional edge localized YSR states in CrCl₃ on NbSe₂, Materials Cloud Archive 2025.15 (2025), https://doi.org/10.24435/materialscloud:1b-aa

Description

Magnet/superconductor hybrid systems have been put forward as a platform for realizing topological superconductivity. We investigated the heterostructure of ferromagnetic monolayer CrCl₃ and superconducting NbSe₂. Using low-temperature scanning tunneling microscopy, we observe topologically trivial Yu-Shiba-Rusinov (YSR) states localized at the edge of CrCl₃ islands. DFT simulations reveal that the Cr atoms at the edge have an enhanced d-orbital DOS close to the Fermi energy. This leads to an exchange coupling between these atoms and the substrate that rationalizes the edge-localization of the YSR states. This dataset contains the first-principles calculations performed on a nanoribbon of CrCl₃ on NbSe₂ and the associated notebooks used to generate figures from this data.

Materials Cloud sections using this data

No Explore or Discover sections associated with this archive record.

Files

File name Size Description
SIESTA-NbSe2-CrCl3.aiida
MD5md5:2f9f5b5ddbb7f735a918f36f5e68dabc
Open this AiiDA archive on renkulab.io (https://renkulab.io/)
1.5 GiB AiiDA export of the calculation data that supports the findings in the paper
nanoribbon-armchair7-sep3-Se2.top.png
MD5md5:b6ff2d003f3a75216a8a6ddcf2fc3704
583.9 KiB VESTA bitmap export of a visualization of the nanoribbon as seen from the top
nanoribbon-armchair7-sep3-Se2.side.png
MD5md5:39deedb5a9793af8416699abcca32390
415.8 KiB VESTA bitmap export of a visualization of the nanoribbon as seen from the side
Figures-main-text.ipynb
MD5md5:963c3514c2cbebad02f88101fe77a8a2
17.3 KiB Notebook to produce the plots of the calculation data from the main text
Figures-supplementary.ipynb
MD5md5:d6d79b86844a6a83539f823aa26a5e41
43.9 KiB Notebook to produce the plots of the calculation data from the supplementary information
requirements.txt
MD5md5:95b0d77f4a15b675692b96cdfbf44f50
2.1 KiB The list of packages required to use the notebooks, the versions of these packages were tested to work properly
README.md
MD5md5:04d7a5afaee86c5f3d688b7b1715020c
3.0 KiB Description of the files in this dataset and how to use them

License

Files and data are licensed under the terms of the following license: Creative Commons Attribution 4.0 International.
Metadata, except for email addresses, are licensed under the Creative Commons Attribution Share-Alike 4.0 International license.

External references

Journal reference (Paper where this dataset is discussed)
J.P. Cuperus, A.H. Kole, A.R. Botello-Méndez, Z. Zanolli, D. Vanmaekelbergh, I. Swart, npj Quantum Materials (submitted)
Journal reference (Paper where the SIESTA method is introduced)
Journal reference (Reference for SIESTA code and the AiiDA-Siesta plugin)
Software (The SIESTA code used for Density Functional Theory calculations)
Journal reference (Paper in which the TB2J method is introduced which was used to compute the exchange interactions in the paper)
Software
Software
Software (The sisl package used to postprocess the data)
Software (AiiDA plugin that makes running shell commands easy)
Journal reference (Paper describing the NumPy package)
Journal reference (Paper describing the matplotlib package)

Keywords

Superconductivity Van der Waals Magnetism Yu-Shiba-Rusinov Heterostructure H2020 Horizon Europe PRACE density-functional theory AiiDA AiiDA-Siesta SIESTA NbSe2 CrCl3

Version history:

2025.15 (version v1) [This version] Jan 22, 2025 DOI10.24435/materialscloud:1b-aa