Inkoo Kim
KAIST
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Featured researches published by Inkoo Kim.
Journal of Chemical Physics | 2013
Inkoo Kim; Yoon Sup Lee
The relativistic two-component complete active space self-consistent field theory in Kramers restricted formalism (KRCASSCF) through the framework of the spin-orbit relativistic effective core potential is implemented into the KPACK package. This paper continues the development previously reported [Y. S. Kim and Y. S. Lee, J. Chem. Phys. 119, 12169 (2003)] and extends the theory by means of adding time-reversal symmetry into the relevant expressions so as to complete the course of theoretical development. We retained the usage of elementary spinor excitation operator for defining the spinor rotation operator and derived the gradient and Hessian in simpler forms than previously found. To eliminate redundant computation resulting from repeating sums in the derivatives, a suitable decomposition method is proposed, which also facilitates the implementation. The two-step near second-order approach is employed for convergence. The present implementation is applicable for both closed- and open-shell systems and is used to calculate the atoms of lower p-block. The results for 5p and 6p are in good agreement with the experiments, and those for 7p are comparable to multi-reference configuration interaction results, showing that KRCASSCF is a versatile tool for the relativistic electronic structure calculation of molecules containing moderate-weight through superheavy elements.
Journal of Chemical Physics | 2014
Inkoo Kim; Yoon Sup Lee
We report the formulation and implementation of KRCASPT2, a two-component multi-configurational second-order perturbation theory based on Kramers restricted complete active space self-consistent field (KRCASSCF) reference function, in the framework of the spin-orbit relativistic effective core potential. The zeroth-order Hamiltonian is defined as the sum of nondiagonal one-electron operators with generalized two-component Fock matrix elements as scalar factors. The Kramers symmetry within the zeroth-order Hamiltonian is maintained via the use of a state-averaged density, allowing a consistent treatment of degenerate states. The explicit expressions are derived for the matrix elements of the zeroth-order Hamiltonian as well as for the perturbation vector. The use of a fully variational reference function and nondiagonal operators in relativistic multi-configurational perturbation theory is reported for the first time. A series of initial calculations are performed on the ionization potential and excitation energies of the atoms of the 6p-block; the results display a significant improvement over those from KRCASSCF, showing a closer agreement with experimental results. Accurate atomic properties of the superheavy elements of the 7p-block are also presented, and the electronic structures of the low-lying excited states are compared with those of their lighter homologues.
Chemical Physics Letters | 2009
Jung-In Seo; Inkoo Kim; Yoon Sup Lee
Chemical Physics | 2012
Inkoo Kim; Young Choon Park; Hyungjun Kim; Yoon Sup Lee
Physical Review A | 2005
V. Tosa; Hyun-Wuk Kim; Inkoo Kim; C. H. Nam
Polyhedron | 2009
Kibong Kim; Inkoo Kim; Nilkamal Maiti; Seong Jung Kwon; Daniela Bucella; Olga A. Egorova; Yoon Sup Lee; Juhyoun Kwak; David G. Churchill
Physical Review A | 2005
V. Tosa; Hyun-Wuk Kim; Inkoo Kim; C. H. Nam
Applied Physics B | 2004
Hyun-Wuk Kim; Inkoo Kim; V. Tosa; Young-Chul Lee; C. H. Nam
Bulletin of The Korean Chemical Society | 2013
Inkoo Kim; Yoon Sup Lee
Journal of Chemical Physics | 2013
Inkoo Kim; Yoon Sup Lee