Lyman-alpha radiation pressure: an analytical exploration
Abstract
We study radiation pressure due to Lyman alpha line photons, obtaining and exploring analytical expressions for the force-multiplier, , as a function of gas column density, , and metallicity, , for both dust-free and dusty media, employing a WKB approach for the latter case. Solutions for frequency offset emission to emulate non-static media moving with a bulk velocity , have also been obtained. We find that, in static media, Ly pressure dominates over both photoionization and dust-mediated UV radiation pressure in a very wide parameter range (; ). For example, it overwhelms the other two forces by 10 (300) times in standard (low-) star-forming clouds. Thus, in agreement with previous studies, we conclude that Ly pressure plays a dominant role in the initial acceleration of the gas around luminous sources, and must be implemented in galaxy formation, evolution and outflow models and simulations.
Cite
@article{arxiv.2103.14655,
title = {Lyman-alpha radiation pressure: an analytical exploration},
author = {Giovanni Maria Tomaselli and Andrea Ferrara},
journal= {arXiv preprint arXiv:2103.14655},
year = {2021}
}