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Shape of the geometrically active atomic states of carbon 被引量:1

Shape of the geometrically active atomic states of carbon
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摘要 We have developed a computer code for {/em ab initio} the variational configuration interaction calculation of the electronic structure of atoms via variationally optimized Lagurre type orbitals, treating the orbital effective charges as variational parameters. Excited states of the same symmetry, in order to avoid the inherent restrictions of the standard method of Hylleraas--Unheim and MacDonald, are computed variationally by minimizing the recently developed minimization functionals for excited states. By computing, at the minimum, the one-electron density and the probability distribution of the two-electron angle, and the most probable two-electron angle, we investigate the atomic states of the carbon atom. We show that, without resorting to the (admittedly unproven) concept of hybridization, as an intrinsic property of the atomic wave function, the most probable value of the two-electron angle is around the known angles of carbon bonding, i.e. either 109^/circ or 120^/circ or 180^/circ, depending on each low-lying state of the bare carbon atom. We have developed a computer code for {/em ab initio} the variational configuration interaction calculation of the electronic structure of atoms via variationally optimized Lagurre type orbitals, treating the orbital effective charges as variational parameters. Excited states of the same symmetry, in order to avoid the inherent restrictions of the standard method of Hylleraas--Unheim and MacDonald, are computed variationally by minimizing the recently developed minimization functionals for excited states. By computing, at the minimum, the one-electron density and the probability distribution of the two-electron angle, and the most probable two-electron angle, we investigate the atomic states of the carbon atom. We show that, without resorting to the (admittedly unproven) concept of hybridization, as an intrinsic property of the atomic wave function, the most probable value of the two-electron angle is around the known angles of carbon bonding, i.e. either 109^/circ or 120^/circ or 180^/circ, depending on each low-lying state of the bare carbon atom.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第2期219-224,共6页 中国物理B(英文版)
基金 supported by the National High Technology Research and Development Program of China (Grant No. 2004AA306H10) the operational program "Competitiveness" of the Greek General Secretariat of Research and Technology(Grant No. 04EP111/ENTEP-2004)
关键词 CARBON HYBRIDIZATION excited states variational principle carbon hybridization excited states variational principle
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  • 1Mulliken R S 1965 J. Chem. Phys. 43 S2.
  • 2Nicolaides C A and Komninos Y 1998 Int. J. Quantum Chem. 67 321.
  • 3Xiong Z, Velgakis M I and Bacalis N C 2005 Int. J. Quantum Chem. 104 418.
  • 4Xiong Z and Bacalis N C 2006 Chin. Phys. 15 992.
  • 5Fischer F C 1997 Computational Atomic Structure (Bristol: Institute of Physics Publishing).
  • 6Bacalis N C, Xiong Z and Karaoulanis D 2008 J. Comput. Meth. Sci. Eng. 8 277.
  • 7Bacalis N C 2008 arXiv:0801.3673.
  • 8Press W H, Teukolsky S A, Vetterling W T and Flannery B P 1992 Numerical Recipes in FORTRAN 2nd ed. (London: Cambridge University Press).
  • 9McWeeny R 1989 Methods of Molecular Quantum Mechanics 2nd ed. (San Diego: Academic).
  • 10Schaefer H F and Harris F E 1968 J. Comput. Phys. 3 217.

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