Vibrational level population of H and H in the early Universe
arXiv:1103.3586 · doi:10.1088/0067-0049/193/1/7
Abstract
We formulate a vibrationally resolved kinetics for molecular hydrogen and its cation in the primordial Universe chemistry. Formation, destruction and relaxation processes for each vibrational level are studied and included as chemical pathways of the present model. The fractional abundance of each vibrational level as a function of the redshift is given: a strong deviation from the Boltzmann distribution is found at low . A discussion of the results is provided, also evaluating the effects of relaxation processes on the level populations. Analytical fits for some LTE rate coefficients are given in the Appendix.
12 pages, 14 figures, 3 tables; published on ApJS 2011, 193, 7
References in corpus (7)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Uncertainties in H2 and HD Chemistry and Cooling and their Role in Early Structure Formation
- Star formation at very low metallicity. I: Chemistry and cooling at low densities
- How well do we understand cosmological recombination?
- Effects of primordial chemistry on the cosmic microwave background
- Cosmological production of H_2 before the formation of the first galaxies
- Primordial massive supernovae as the first molecular factories in the early universe