Improved ground state energies of electronegative atoms using Hartree–Fock self-consistent field approximation

被引:0
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作者
Amber Jamal
Muniba Fatima
Tanveer Iqbal
Imran Siddiqui
Syed Zeeshan Abbas
机构
[1] University of Karachi,Department of Physics
[2] Goverment Degree Girls College Bufferzone,Institute of Space Science and Technology
[3] University of Karachi,undefined
来源
Indian Journal of Physics | 2023年 / 97卷
关键词
Self-consistent method; Hartree–Fock method; Electron correlations; Correlation-consistent polarized basis functions;
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摘要
In many-electron systems, the exchange and correlation energies, associated with the indistinguishability and Columbic interactions among electrons, are the major cause for the inaccurate estimate of their ground state energies. In the present study, improved ground state energies of highly electronegative atoms such as F, Cl, B, Al and Sc are obtained using unrestricted Hartree–Fock method, though Hartree–Fock method does not incorporate the interactions between electrons (correlation) leading to inaccurate estimates of total energy. Nevertheless, an augmented correlation-consistent polarized valence Quintuple-Zeta functions (aug-cc-pV5Z) are used which incorporate the correlation and polarization effects in the functions. Such effects are very important in case of highly electronegative atoms. The results obtained in this study are compared with previous theoretical work and with values given in NIST tables for the ground state energies of the investigated atoms. It has been found that energies have been much improved by using aug-cc-pV5Z basis sets for the atoms under investigation.
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页码:3775 / 3779
页数:4
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