2008Acta Physica SinicaOpen access

Accurate studies on rovibrational energies of the electronic state B1Σ of HF molecule using an algebraic approach

Fan Qun-Chao, Sun Weiguo, Qu Shuang-Shuang, 四川大学原子与分子物理研究所,成都 610065

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Abstract

Based on the algebraic method (AM) presented in our previous study, a new algebraic approach (AM2) is suggested to evaluate accurate rovibrational energies and corresponding rotational constants using known experimental data of rovibrational energies of limited accuracy of a given rovibrational band for a diatomic electronic state. The results of reseach on rovibrational energies of the B1Σ electronic state of HF molecule shows that Algebraic Method 2 gives rovibrational energies in excellent agreement with experimental data, and the method generates reliable energies of high-lying rovibrational excited states which may be difficult to obtain experimentally or theoretically.

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Based on the algebraic method (AM) presented in our previous study, a new algebraic approach (AM2) is suggested to evaluate accurate rovibrational energies and corresponding rotational constants using known experimental data of rovibrational energies of limited accuracy of a given rovibrational band for a diatomic electronic state. The results of reseach on rovibrational energies of the B1Σ electronic state of HF molecule shows that Algebraic Method 2 gives rovibrational energies in excellent agreement with experimental data, and the method generates reliable energies of high-lying rovibrational excited states which may be difficult to obtain experimentally or theoretically.

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Available abstract

Based on the algebraic method (AM) presented in our previous study, a new algebraic approach (AM2) is suggested to evaluate accurate rovibrational energies and corresponding rotational constants using known experimental data of rovibrational energies of limited accuracy of a given rovibrational band for a diatomic electronic state. The results of reseach on rovibrational energies of the B1Σ electronic state of HF molecule shows that Algebraic Method 2 gives rovibrational energies in excellent agreement with experimental data, and the method generates reliable energies of high-lying rovibrational excited states which may be difficult to obtain experimentally or theoretically.

Key concepts: Rotational–vibrational spectroscopy, Diatomic molecule, Excited state, Physics, Atomic physics, Algebraic number, Molecule, Quantum mechanics

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