DFT inputs for "Cubic coordination unlocks bond-dependent anisotropy and next-nearest-neighbor frustration in a Yb3+ quantum magnet"
Description
Input and output files for the DFT calculation.
This dataset contains DFT input and output files supporting the hopping parameters in "Cubic coordination unlocks bond-dependent anisotropy and next-nearest-neighbor frustration in a Yb3+ quantum magnet".
(i) For DFT calculations, the dataset includes the crystal structure file (POSCAR), input options (INCAR), pseudopotential information (POTCAR_info), and output files (OUTCAR).
(ii) For Wannier90 calculations, the input (wannier90.win) and output (wannier90.wout) files are included.
Funding Information
DOE Contract Number
AC05-00OR22725Originating Research Organization
Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)Sponsoring Organization
Office of Science (SC), Basic Energy Sciences (BES). Materials Sciences & Engineering Division (MSE)Details
Release Date
October 1, 2026Subject
MATERIALS SCIENCEKeywords
Density Functional TheoryDataset
Dataset Type
SM Specialized MixSoftware
VASP, Wannier90Cite This Dataset:
Kiem, D., Berlijn, T. (2026). DFT inputs for "Cubic coordination unlocks bond-dependent anisotropy and next-nearest-neighbor frustration in a Yb3+ quantum magnet". Oak Ridge National Laboratory. https://doi.org/10.13139/ORNLNCCS/3895887.
Acknowledgements
This work was carried out [in part] at Oak Ridge National Laboratory, managed by UT-Battelle, LLC for the U.S. Department of Energy under contract DE-AC05-00OR22725.