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VASPKIT: A User-friendly Interface Facilitating High-throughput Computing and Analysis Using VASP Code

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arxiv 1908.08269 v6 pith:ACJU2QSV submitted 2019-08-22 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords programvaspkitanalysishigh-throughputinterfacestructurecodecommand-line
verification ladder T0 review T1 audit T2 compute T3 formal
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We present the VASPKIT, a command-line program that aims at providing a powerful and user-friendly interface to perform high-throughput analysis of a variety of material properties from the raw data produced by the VASP code. It consists of mainly the pre- and post-processing modules. The former module is designed to prepare and manipulate input files such as the necessary input files generation, symmetry analysis, supercell transformation, k-path generation for a given crystal structure. The latter module is designed to extract and analyze the raw data about elastic mechanics, electronic structure, charge density, electrostatic potential, linear optical coefficients, wave function plots in real space, and etc. This program can run conveniently in either interactive user interface or command line mode. The command-line options allow the user to perform high-throughput calculations together with bash scripts. This article gives an overview of the program structure and presents illustrative examples for some of its usages. The program can run on Linux, MacOS, and Windows platforms. The executable versions of VASPKIT and the related examples, together with the tutorials, are available in its official website vaspkit.com.

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  1. Altermagnetizing the FeSe-like two-dimensional materials and approaching to giant tunneling magnetoresistance with Janus Cr4BN(B2) MBene electrode

    cond-mat.mtrl-sci 2025-02 reject novelty 6.0 of 10

    A DFT study predicts the 2D altermagnet Cr4B3N and a Cr4B3N/vacuum/Cr4B3N junction with a computed TMR of about 91,000% for Cr-B edge electrodes.

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