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TaV_BCC_SolidSolution_128atoms_VASP6 - DOI: 10.13139/OLCF/2222910

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Figshare2024-05-12 更新2026-04-08 收录
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https://figshare.com/articles/dataset/TaV_BCC_SolidSolution_128atoms_VASP6_-_DOI_10_13139_OLCF_2222910/25805131/1
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The files contained in each sub-directory 'case-*' for each atomic structure are as follows:FILES contained in each subdirectory with name "case-N" where N ranges between 11 and 100, extremes included:1. INCAR: input file that contains various parameters and settings for controlling the behavior of the electronic structure calculations2. KPOINTS: input file that specifies the Bloch vectors (k points) used to sample the Brillouin zone3. 0.POSCAR: input file that defines the atomic structure of a system4. 0.CONTCAR: output file that provides the atomic positions and cell parameters after the first geometry optimization has been run with the precision variable set to PREC=Low in the INCAR file5. 0.OUTCAR: output file that contains detailed information about the progress of a calculation after the first geometry optimization has been run with the precision variable set to PREC=Low in the INCAR file6. rlx1.out: file with diagnostic information about the execution of the first geometry optimization with precision variable set to PREC=Low in the INCAR file7. POSCAR: input file that defines the atomic structure of a system after the first geometry optimization has been run at low precision. This represents the input for the second geometry optimization run with the precision variable set to PREC=Normal in the INCAR file8. CONTCAR: output file that provides the atomic positions and cell parameters after the second geometry optimization has been run with the precision variable set to PREC=Normal in the INCAR file9. OUTCAR: output file that contains detailed information about the progress of a calculation after the second geometry optimization has been run with the precision variable set to PREC=Normal in the INCAR file10. rlx2.out: file with diagnostic information about the execution of the second geometry optimization with precision variable set to PREC=Normal in the INCAR file11. vaspout.h5: hierarchical HDF5 file containing the inputs and outputs of a VASP calculation. To analyze the data in this file we recommend using py4vasp. This file is only produced if the VASP version used is compiled with HDF5 support12. vasprun.xml: contains similar information to OUTCAR, but in an xml format. Subdirectories with name "case-N", where N ranges between 1 and 10 (extremes included) contain all the files listed above except 'vaspout.h5'. Subdirectories with name "case-N", where N ranges between 41 and 60 (extremes included), contain a duplicate copy of the files listed above except for KPOINTS. The names of the duplicate files end with "-bis", and correspond to a second VASP calculation that has converged to a different optimized geometry. <br>REFERENCES(1) Kresse, G. &amp; Hafner, J. Ab initio molecular dynamics for liquid metals. Phys. review B 47, 558 (1993).(2) Kresse, G. &amp; Hafner, J. Ab initio molecular-dynamics simulation of the liquid-metal–amorphous-semiconductor transition in germanium. Phys. Rev. B 49, 14251 (1994)(3) Kresse, G. &amp; Furthmüller, J. Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set. Comput. materials science 6, 15–50 (1996)(4) Kresse, G. &amp; Furthmüller, J. Efficient iterative schemes for ab initio total-energy calculations using a plane-wave basis set. Phys. review B 54, 11169 (1996)(5) Kresse, G. &amp; Joubert, D. From ultrasoft pseudopotentials to the projector augmented-wave method. Phys. review b 59, 1758 (1999)
提供机构:
Yang, Ying; Yin, Junqi; Lupo Pasini, Massimiliano; Eisenbach, Markus; Choi, Jong Youl; Samolyuk, German
创建时间:
2024-05-12
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