TY - JOUR
T1 - Kinetic energy decomposition scheme based on information theory
AU - Imamura, Yutaka
AU - Suzuki, Jun
AU - Nakai, Hiromi
PY - 2013/12/15
Y1 - 2013/12/15
N2 - We proposed a novel kinetic energy decomposition analysis based on information theory. Since the Hirshfeld partitioning for electron densities can be formulated in terms of Kullback-Leibler information deficiency in information theory, a similar partitioning for kinetic energy densities was newly proposed. The numerical assessments confirm that the current kinetic energy decomposition scheme provides reasonable chemical pictures for ionic and covalent molecules, and can also estimate atomic energies using a correction with viral ratios. A novel kinetic energy decomposition analysis based on information theory is proposed. The numerical assessments confirm that the current kinetic energy decomposition scheme provides reasonable chemical pictures for ionic and covalent molecules. It can also estimate atomic energies using a correction with viral ratios.
AB - We proposed a novel kinetic energy decomposition analysis based on information theory. Since the Hirshfeld partitioning for electron densities can be formulated in terms of Kullback-Leibler information deficiency in information theory, a similar partitioning for kinetic energy densities was newly proposed. The numerical assessments confirm that the current kinetic energy decomposition scheme provides reasonable chemical pictures for ionic and covalent molecules, and can also estimate atomic energies using a correction with viral ratios. A novel kinetic energy decomposition analysis based on information theory is proposed. The numerical assessments confirm that the current kinetic energy decomposition scheme provides reasonable chemical pictures for ionic and covalent molecules. It can also estimate atomic energies using a correction with viral ratios.
KW - Hirshfeld partitioning
KW - Kullback-Leibler information deficiency
KW - Weizäcker partitioning
KW - energy decomposition
KW - kinetic energy density
KW - virial ratio
UR - http://www.scopus.com/inward/record.url?scp=84887045033&partnerID=8YFLogxK
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U2 - 10.1002/jcc.23457
DO - 10.1002/jcc.23457
M3 - Article
C2 - 24132810
AN - SCOPUS:84887045033
SN - 0192-8651
VL - 34
SP - 2787
EP - 2795
JO - Journal of Computational Chemistry
JF - Journal of Computational Chemistry
IS - 32
ER -