The tool that we are using to realise this project has been developed by the team: the radiation transfer code RASCAS, for RAdiation SCAttering in Simulations, is publicly available (
http://rascas.univ-lyon1.fr(odnośnik otworzy się w nowym oknie)) and is described in Michel-Dansac et al. 2020.
We have been intensively working on two out of the three indirect probes of the escape of ionising radiation from galaxies that we proposed to investigate: Lyman-alpha (Garel et al. 2021; Maji et al. 2022) and the ISM absorption lines (Mauerhofer et al. 2021), since the Oxygen lines ratio was recently ruled out by observational data (e.g. Izotov et al. 2018), as well as simulations (Katz et al. 2020). On the other hand, we propose a new, unforeseen, indirect probe of the escape of ionising radiation from galaxies, which is the MgII resonant doublet. Our main research achievements so far are summarised below:
A. How to use Lyman-Alpha (Lya) to trace LyC escape from virtual galaxies ?
We find a strong correlation between the Lyman-alpha and LyC luminosities of a statistical sample of ~2000 virtual galaxies from the SPHINX project (
https://sphinx.univ-lyon1.fr(odnośnik otworzy się w nowym oknie)) opening a new path to search for LCEs, by selecting Lya-bright galaxies.
We propose formulas to predict the LyC outputs from a galaxy, knowing its Lyman-alpha outputs, and a few galaxy properties.
B. Can we use UV absorption lines to trace LyC escape from virtual galaxies ?
We produced mock UV absorption spectra of a galaxy observed in thousands of directions, to study the link between the escape of LyC from virtual galaxies and observational properties of metallic LIS absorption lines (Equivalent Widths in absorption and fluorescent emission, residual fluxes, velocities).
We find that directions where these lines are well saturated always correspond to lines of sight with no leakage of ionising radiation, but the contrary is not true: there are lines of sights with weak absorption lines but weak LyC escape fractions, leading to a lot of scatter in the correlations between the observational quantities, and the LyC leakage.
C. Can we use MgII spectral properties to trace LyC escape from galaxies ?
As the Lymna-alpha line of Hydrogen, the MgII doublet is resonant, and tracing the neutral phase of the InterStellar Medium (ISM).
Thanks to a grid of around 1000 idealised geometries, we are investigating the relation between MgII peak ratio and peak shift with the escape fraction of ionising radiation (Verhamme et al in prep.).