English

GOALS-JWST: Resolved multi-phase molecular gas in IRAS 20551-4250 using JWST and ALMA

Astrophysics of Galaxies 2026-04-22 v1 High Energy Astrophysical Phenomena

Abstract

Studying the content and distribution of molecular gas provides key insights into how feedback from Active Galactic Nuclei (AGN) and star formation influences galaxy evolution, since molecular gas is the primary fuel for star formation. Ultra-Luminous Infrared Galaxies (ULIRGs) are ideal candidates to study how AGN and/or starbursts affect the interstellar medium due to their intense AGN and star forming activity. We present spatially-resolved multi-phase molecular gas study of IRAS20551-4250, a nearby (z=0.0429z=0.0429) ULIRG, using JWST/MIRI-MRS and ALMA. Mid-infrared diagnostics do not rule out the presence of AGN in IRAS20551-4250. [OIII]λ\lambda5007 in VLT/MUSE data reveal ionised gas outflows with w80[OIII]790w_{80}^{\rm [OIII]} \sim 790 km s1^{-1} and M˙out[OIII]<0.01\dot{M}_{\rm out}^{\rm[OIII]}<0.01 M_{\odot} yr1^{-1}. No outflows are observed in either molecular phases. JWST/MIRI-MRS data reveal several rotational transitions of warm H2_{2} (T5001400\sim500-1400 K) within the central 4×4\sim4\times4 kpc2^{2} region. Excitation temperature maps suggest that the warm H2_{2} is primarily heated by UV radiation from the central source. The CO-based cold molecular component dominates the molecular gas mass, accounting for >>95% of the total molecular gas mass. Warm H2_{2} maps show two tidal tails and the velocity centroid maps show disturbed, non-rotational motions and a systematic gradient across the field-of-view, similar to that of ALMA CO-based cold molecular gas and consistent with a late-stage merger. Together, our analysis indicate that the molecular gas composition in IRAS20551-4250 is consistent with ongoing star formation in the host galaxy and the outflows observed in ionised gas phase appear insufficient to expel the molecular gas or quench ongoing star formation.

Cite

@article{arxiv.2604.18671,
  title  = {GOALS-JWST: Resolved multi-phase molecular gas in IRAS 20551-4250 using JWST and ALMA},
  author = {D. Kakkad and Y. Song and T. S. -Y. Lai and L. Armus and M. Malkan and K. L. Larson and A. S. Evans and P. N. Appleton and L. Barcos-Muñoz and M. Bianchin and T. Böker and T. Bohn and V. Buiten and V. Charmandaris and T. Diaz Santos and H. Inami and J. Kader and L. Lenkic and S. T. Linden and C. M. Lofaro and G. C. Privon and C. Ricci and M. Sanchez-Garcia and D. Sanders and N. Torres-Alba and V. U and P. van der Werf},
  journal= {arXiv preprint arXiv:2604.18671},
  year   = {2026}
}

Comments

Accepted for publication in MNRAS, 18 pages, 15 figures, 1 table