A Theoretical Study of the A 2 Σ + – X 2 Π System of the SiP Molecule

  • Ornellas F
  • Andreazza C
  • de Almeida A
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Abstract

The A2∑+ and Z2∏ electronic states of the SiP species have been investigated theoretically at a very high level of correlation treatment (CASSCF/MRSDCI). Very accurate potential energy curves are presented for both states, as well as the associated spectroscopic constants as derived from the vib-rotational energy levels determined by means of the numerical solution of the radial Schrödinger equation. Electronic transition moment function, oscillator strengths, Einstein coefficients for spontaneous emission, and Franck-Condon factors for the A2∑+-X2∏ system have been calculated. Dipole moment functions and radiative lifetimes for both states have also been determined. Spin-orbit coupling constants are also reported. The radiative lifetimes for the A2∑+ state, taking into account the spin-orbit diagonal correction to the X2∏ state, decrease from a value of 138 ms at v′ = 0 to 0.48 ms at v′ = 8, and, for the X2∏ state, from 2.32 s at v″ = 1 to 0.59 s at v″ = 5. Vibrational and rotational transitions are expected to be relatively strong.

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APA

Ornellas, F. R., Andreazza, C. M., & de Almeida, A. A. (2000). A Theoretical Study of the A 2 Σ + – X 2 Π System of the SiP Molecule. The Astrophysical Journal, 538(2), 675–683. https://doi.org/10.1086/309178

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