Physics of ULIRGs with MUSE and ALMA: The PUMA project I. Properties of the survey and first MUSE data results
M. Perna, S. Arribas, M. Pereira Santaella, L. Colina, E. Bellocchi,, C. Catalan-Torrecilla, S. Cazzoli, A. Crespo Gomez, R. Maiolino, J. Piqueras, Lopez, B. Rodriguez del Pino

TL;DR
The PUMA project investigates multi-phase outflows in 25 ULIRGs using MUSE and ALMA, revealing widespread outflows linked to AGN and starburst activity, and analyzing their impact on galaxy evolution.
Contribution
This study presents the first data and analysis from the PUMA survey, detailing sample selection, observations, and initial findings on ULIRG dynamics and outflows.
Findings
Post-coalescence systems show ordered motions.
Interacting systems exhibit non-ordered motions.
Widespread broad and asymmetric emission lines indicating outflows.
Abstract
Ultraluminous infrared galaxies (ULIRGs) are characterised by extreme starburst (SB) and AGN activity, and are therefore ideal laboratories for studying the outflow phenomena. We have recently started a project called Physics of ULIRGs with MUSE and ALMA (PUMA), which is a survey of 25 nearby (z < 0.165) ULIRGs observed with the integral field spectrograph MUSE and the interferometer ALMA. This sample includes systems with both AGN and SB nuclear activity in the pre- and post-coalescence phases of major mergers. The main goals of the project are to study the prevalence of multi-phase outflows as a function of the galaxy properties, to constrain the driving mechanisms of the outflows (e.g. distinguish between SB and AGN winds), and to identify feedback effects on the host galaxy. In this first paper, we present details on the sample selection, MUSE observations, and derive first data…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
