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The dataverse of the Peter Grünberg Institut – Quantum Nanoscience (PGI-3)
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891 to 900 of 1,670 Results
Sep 26, 2025
Moors, Kristof; Wagner, Christian; Soltner, Helmut; Lüpke, Felix; Tautz, F. Stefan; Voigtländer, Bert, 2025, "Data used in: Distributed Current Injection into a One-dimensional Ballistic Edge Channel", https://doi.org/10.26165/JUELICH-DATA/PKSMCO, Jülich DATA, V1
This repository contains the Python code for numerically solving the potential profile over a half-plane with distributed current injection into a 1D ballistic edge channel (see README file), and the output files that contain the solutions presented in the publication “Distribute...
ZIP Archive - 611.9 KB - SHA-256: 8fc31f87a845e5e0f0aa6b73b3dcd887cf9a91dfbf894137aa42f2bf7b9dbbb4
Python code for numerically solving the potential profile over a half-plane with distributed current injection into a 1D ballistic edge channel (see README file), and the output files that contain the solutions presented in the publication “Distributed Current Injection into a On...
Jul 8, 2025
Niclas Tilgner; Susanne Wolff; Serguei Soubatch; Tien-Lin Lee; Andres David Peña Unigarro; Sibylle Gemming; F. Stefan Tautz; Thomas Seyller; Christian Kumpf; Fabian Göhler; Philip Schädlich, 2025, "Data used in: Reversible Switching of the Environment-Protected Quantum Spin Hall Insulator Bismuthene at the Graphene/SiC Interface", https://doi.org/10.26165/JUELICH-DATA/NRZVPE, Jülich DATA, V1
We provide here the raw data used to produce Figures in Niclas Tilgner, Susanne Wolff, Serguei Soubatch, Tien-Lin Lee, Andres David Peña Unigarro, Sibylle Gemming, F. Stefan Tautz, Thomas Seyller, Christian Kumpf, Fabian Göhler, and Philip Schädlich, "Reversible Switching of the...
Plain Text - 6.9 MB - SHA-256: fe0faee783c9b39525b351c991f5ee75ff576fcb813229c371283ee9267710cd
ARPES intensity of the precursor phase measured along the Г-К direction and used to produce Figure 1.
Plain Text - 6.9 MB - SHA-256: ba94d8cacfbbc28fd8252a7945ef0d3d9a4190ed069722c236d36b62346555f6
ARPES intensity of the precursor phase measured along the Г-М direction and used to produce Figure 1.
Plain Text - 1.0 KB - SHA-256: 6841c45f9653f00173be5be8e1376f204fb623bf7e30eb03bdf97dc108f304e6
Coherent fractions and coherent positions of the bulk components (Si and C) and Bi of the precursor phase derived from NIXSW measurements with different Bragg reflections and used to construct the atomic-density-distribution maps in Figure 1 d, e, and f.
Plain Text - 6.8 MB - SHA-256: f4975ea559e9caaf0fb1c78c57d38f0e918040b0c241026c1dc12953272240cf
ARPES intensity of bismuthene measured along the Г-К direction and used to produce Figure 2.
Plain Text - 6.8 MB - SHA-256: 0b3e0738ada6d82d77dde1fcb7e0f4fc24c04088e66abb926d1991fbfdfb7d23
ARPES intensity of bismuthene measured along the Г-М direction and used to produce Figure 2.
Plain Text - 1.1 KB - SHA-256: 67dd9e335af41c7ea36f9380b4cbf9af1d51eb597b925d915ac6baadea86afab
Coherent fractions and coherent positions of the bulk components (Si and C) and Bi of bismuthene derived from NIXSW measurements with different Bragg reflections and used to construct the atomic-density-distribution maps in Figure 2 a and b.
Plain Text - 2.0 MB - SHA-256: afdf90e3f14ea5208f409d8ed7dc88197e123c1094f8ab67dda99106da779b49
ARPES intensity of bismuthene on 4H-SiC used to produce Figure 3a.
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