Chem. J. Chinese Universities

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Theoretical Simulation for the Emission Spectrum of Microwave-driven Sulfur Lamp

GAI Zhi-Qiang1, YU Xin1, YAN Bing2*, CHEN Fei1, LI Rui2, ZHAO Shu-Tao2, PAN Shou-Fu2, CHEN De-Ying1, WANG Fu-Li1, YU Jun-Hua1*   

    1. National Key Laboratory of Tunable Laser Technology, Harbin Institute of Technology, Harbin 150080, China;
    2. Institute of Atomic and Molecular Physics, Jilin University, Changchun 130012, China
  • Received:2008-01-10 Revised:1900-01-01 Online:2008-11-10 Published:2008-11-10
  • Contact: YAN Bing,YU Jun-Hua

Abstract: The emission spectrum of microwave-driven sulfur lamp was obtained by experimental measurement. The emission moment of S2 B3Σu-X3Σg- and B3Πu-X3Σg- electronic states and the Franck-Condon factors between their vibrational level were calculated by quantum ab initio method of multi-configuration quasi-degenerate perturbation theory and cc-pVQZ basic set, then, their emission spectra were derived. Absorption spectra of Sn(n=2—8) molecules were also calculated via time-dependent density functional theory. The emission spectrum and experimental one of S2 molecules were took step to compare and analyze. The results can be used to well explain the emission spectrum characteristic of the microwave-driven sulfur lamp. The theoretical simulation results can well guide the further experiments to fit better with sun′s spectrum.

Key words: Multi-configuration quasi-degenerate perturbation theory, Time dependent density functional theory, Franck-Condon factor, Emission spectrum of S2 molecule

CLC Number: 

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