Confusion of extragalactic sources in the far infrared: a baseline assessment of the performance of PRIMAger in intensity and polarization
Matthieu B\'ethermin, Alberto D. Bolatto, Fran\c{c}ois Boulanger, and Charles M. Bradford, Denis Burgarella, Laure Ciesla, James, Donnellan, Brandon S. Hensley, Jason Glenn, Guilaine Lagache and, Enrique Lopez-Rodriguez, Seb Oliver, Alexandra Pope, Marc Sauvage

TL;DR
This study assesses the confusion noise impact on the upcoming PRIMAger far-infrared mission, predicting detection limits and performance in intensity and polarization, and highlighting the potential for high-redshift galaxy observations.
Contribution
It provides the first detailed simulation-based predictions of confusion limits and source detection capabilities for PRIMAger in both intensity and polarization.
Findings
Confusion limit increases rapidly with wavelength in intensity.
Polarization confusion limit is over 100 times lower than intensity.
Basic blind extraction can detect galaxies up to z~3 in intensity and ~8,000 sources up to z=2.5 in polarization.
Abstract
Because of their limited angular resolution, far-infrared telescopes are usually affected by confusion phenomenon. Since several galaxies can be located in the same instrumental beam, only the brightest objects emerge from the fluctuations caused by fainter sources. The probe far-infrared mission for astrophysics imager (PRIMAger) will observe the mid- and far-infrared (25-235 m) sky both in intensity and polarization. We aim to provide predictions of the confusion level and its consequences for future surveys. We produced simulated PRIMAger maps affected only by the confusion noise using the simulated infrared extragalactic sky (SIDES) semi-empirical simulation. We then estimated the confusion limit in these maps and extracted the sources using a basic blind extractor. By comparing the input galaxy catalog and the extracted source catalog, we derived various performance metrics as…
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Taxonomy
TopicsAstronomical Observations and Instrumentation · Radio Astronomy Observations and Technology · Astrophysics and Cosmic Phenomena
