Spritz is sparkling: simulated CO and [CII] luminosities
L. Bisigello, L. Vallini, C. Gruppioni, F. Esposito, F. Calura, I., Delvecchio, A. Feltre, F. Pozzi, and G. Rodighiero

TL;DR
This paper updates the SPRITZ simulation to predict the luminosity functions of [CII] and CO lines up to z=10, validating them against observations and providing tools for future observational planning.
Contribution
The study introduces an enhanced SPRITZ simulation including CO and [CII] luminosities, using empirical relations to improve predictions of line luminosity functions up to high redshift.
Findings
CO and [CII] luminosity functions agree with observations
Best [CII] predictions derive from SFR with metallicity dependence
Molecular gas density estimates align with observational data
Abstract
We present a new prediction of the luminosity functions of the [CII] line at 158 m, of the CO lines from J=0 to J=24, and of the molecular gas mass density up to z=10, using the Spectro-Photometric Realisations of Infrared-selected Targets at all-z (SPRITZ) simulation (Bisigello et al. 2021). We update the state-of-the-art phenomenological simulation SPRITZ to include both the CO () and [CII] line luminosities. This has been performed using different empirical and theoretical relations to convert the total infrared luminosity (or star formation rate) to [CII] or CO luminosity. The resulting line luminosity functions have been compared for validation with a large set of observations available in the literature. We then used the derived CO and [CII] line luminosities to estimate the molecular gas mass density and compare it with available observations. The CO and [CII]…
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Taxonomy
TopicsDark Matter and Cosmic Phenomena · Photocathodes and Microchannel Plates
