Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7846238 | Journal of Quantitative Spectroscopy and Radiative Transfer | 2018 | 8 Pages |
Abstract
The rovibrational transition lines are computed for the lowest four singlet states of BeH+, including three 1Σ+ and one 1Î states, and the collisionally-broadened BeH+ opacities relevant to stellar atmospheres are computed using these line lists for the temperatures of 1800â¯K, 4500â¯K, 10,000â¯K, 20,000â¯K and a pressure of 100 atms. The ab initio multi-reference single- and double-excitation configuration interaction (MRDCI) method is employed to calculate the potentials and dipole transition momentum, based on which the spectroscopic constants are extracted and the corresponding ro-vibrational energies, Einstein coefficients as well as oscillator strengths are computed with high precision. For the convenience of relevant application, the partition functions are calculated from 100â¯K to 40,000â¯K, which are important for the modeling of features of interstellar observations as well as the fusion plasma emissions in the edge and divertor region.
Related Topics
Physical Sciences and Engineering
Chemistry
Spectroscopy
Authors
Xu Xue-song, Dai An-qi, Peng Yi-Geng, Wu Yong, Wang Jian-guo,