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Relativistic two-component infinite order method for atomic core ionization potentials
1.K. Siegbahn, C. Nordling, G. Johansson et al., ESCA Applied to Free Molecules (North-Holland, Amsterdam, 1969).
3.See the review papers in Coord. Chem. 249, 1 (2005).
4.K. Siegbahn, C. Fahlman, R. Nordberg, K. Hamrin, J. Hedman, G. Johansson, T. Bergamrk, S. -E. Karlsson, L. Lindgren, and B. Lindberg, ESCA: Atomic, Molecular and Solid State Structure Studied by Means of Electron Spectroscopy (Almqvist and Wiksell, Uppsala, 1967).
6.I. Lindgren and J. Morrison, Atomic Many-Body Theory (Springer, Berlin, 1982).
15.M. Barysz, Theoretical Chemistry and Physics of Heavy and Superheavy Elements, Progress in Theoretical Chemistry and Physics Series, Vol. 11 (Kluwer, Boston 2003), p–349, and references therein.
25.B. O. Roos, Adv. Chem. Phys. 69, 399 (1987).
28.K. Andersson, M. Barysz, A. Bernhardsson et al., MOLCAS Version 6.5. (Lund University, Sweden, 2006).
29.K. Andersson, M. Barysz A. Bernhardsson et al., MOLCAS Version 5.4. (Lund University, Sweden, 2002).
30.The IOTC method was implemented in the local version of the MOLCAS 5.4 system of programs by D. Kȩdziera (Department of Quantum Chemistry, Institute of Chemistry, N. Copernicus University, Toruń, Poland 2003) and by D. Kȩdziera and V. Kellö (Comenius University, Bratislava, Slovakia, 2006) in MOLCAS 6.5. The corresponding patches for MOLCAS 5 and MOLCAS 6 releases of MOLCAS can be obtained directly either form D. Kȩdziera (electronic-mail: firstname.lastname@example.org. pl) or from V. Kellö (electronic-mail: email@example.com).
32.M. Lewandowska-Robak, Ph.D. thesis, N. Copernicus University, 2006.
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