Parameterization of the level-resolved radiative recombination rate coefficients for the SPEX code
Abstract
The level-resolved radiative recombination (RR) rate coefficients for H-like to Na-like ions from H (Z = 1) up to and including Zn (Z = 30) are studied here. For H-like ions, the quantum-mechanical exact photoionization cross sections for nonrelativistic hydrogenic systems are used to calculate the RR rate coefficients under the principle of detailed balance, while for He-like to Na-like ions, the archival data on ADAS are adopted. Parameterizations are made for the direct capture rates in a wide temperature range. The fitting accuracies are better than 5% for about 99% of the 30, 000 levels considered here. The 1% exceptions include levels from low- charged many-electron ions, and/or high-shell (n>=4) levels are less important in terms of interpreting X-ray emitting astrophysical plasmas. The RR data will be incorporated into the high-resolution spectral analysis package SPEX.
Keywords
Cite
@article{arxiv.1602.02939,
title = {Parameterization of the level-resolved radiative recombination rate coefficients for the SPEX code},
author = {Junjie Mao and Jelle Kaastra},
journal= {arXiv preprint arXiv:1602.02939},
year = {2016}
}
Comments
4 pages, accepted for publish as A&A research note