Chinese Optics Letters, Volume. 3, Issue 12, 12683(2005)

Ab initio calculations on accurate dissociation energy, equilibrium geometry, and analytic potential energy function for the b3Π state of 7LiH molecule

Deheng Shi1,2,3、*, Yufang Liu2, Jinfeng Sun2,3, Zunlue Zhu2,3, and Xiangdong Yang3
Author Affiliations
  • 1College of Physics & Electronic Engineering, Xinyang Normal University, Xinyang 464000
  • 2College of Physics & Information Engineering, Henan Normal University, Xinyang 453007
  • 3Institute of Atomic and Morlecular Physics, Sichuan University, Chengdu 610065
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    The accurate dissociation energy and equilibrium geometry of the b3Π state of 7LiH molecule is calculated using a symmetry-adapted-cluster configuration-interaction method in full active space. And the calculated results are 0.2580 eV and 0.1958 nm for the dissociation energy and equilibrium geometry, respectively. The whole potential energy curve for the b3Π state is also calculated over the internuclear separation range from about 0.10 to 0.54 nm. The results are fitted by the Murrell-Sorbie function. It is found that the Murrell-Sorbie function form, which is mainly used to fit the ground-state potential energy function, is well suitable for the excited triplet b3Π state. The vertical excitation energy from the ground state to the b3Π state is calculated to be 4.233 eV. Based on the analytic potential energy function, the harmonic frequency of 610.88 cm^(-1) about this state is firstly estimated. Compared with other theoretical results, this work is the most complete effort to deal with the analytic potential energy function and the harmonic frequency of this state.

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    Deheng Shi, Yufang Liu, Jinfeng Sun, Zunlue Zhu, Xiangdong Yang. Ab initio calculations on accurate dissociation energy, equilibrium geometry, and analytic potential energy function for the b3Π state of 7LiH molecule[J]. Chinese Optics Letters, 2005, 3(12): 12683

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    Paper Information

    Category: Atomic and Molecular Physics

    Received: Aug. 10, 2005

    Accepted: --

    Published Online: Jun. 6, 2006

    The Author Email: Deheng Shi (scattering@sina.com.cn or dehengshi@yahoo.com.cn)

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