Is this an early stage merger? A case study on molecular gas and star formation properties of Arp 240

Author:

He Hao1ORCID,Wilson C D1ORCID,Sliwa Kazimierz2,Iono Daisuke34,Saito Toshiki235

Affiliation:

1. Department of Physics and Astronomy, McMaster University, Hamilton, ON L8S4M1, Canada

2. Max-Planck Institute for Astronomy, Königstuhl 17, D-69117 Heidelberg, Germany

3. National Astronomical Observatory of Japan, 2-21-1 Osawa, Mitaka, Tokyo 181-0015, Japan

4. SOKENDAI (The Graduate University for Advanced Studies), 2-21-1 Osawa, Mitaka, Tokyo 181-8588, Japan

5. Department of Astronomy, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan

Abstract

ABSTRACT We present new high-resolution 12CO J = 1–0, J = 2–1, and 13CO J = 1–0 maps of the early stage merger Arp 240 (NGC 5257/8) obtained with the Atacama Large Millimeter/submillimeter Array (ALMA). Simulations in the literature suggest that the merger has just completed its first passage; however, we find that this system has a lower global gas fraction but a higher star formation efficiency (SFE) compared to typical close galaxy pairs, which suggests that this system may already be in an advanced merger stage. We combine the ALMA data with 12CO J = 3–2 observations from the Submillimeter Array and carry out RADEX modelling on several different regions. Both, the RADEX modelling and a local thermal equilibrium (LTE) analysis show that the regions are most likely to have a CO-to-H2 conversion factor αCO close to or perhaps even smaller than the typical value for (ultra)luminous infrared galaxies. Using 33-GHz data from the Very Large Array to measure the star formation rate, we find that most star-forming regions have molecular gas depletion times of less than 100 Myr. We calculated the SFE per free-fall time for different regions and find some regions appear to have values greater than 100 per cent. We find these regions generally show evidence for young massive clusters (YMCs). After exploring various factors, we argue that this is mainly due to the fact that radio continuum emission in those regions is dominated by that from YMCs, which results in an overestimate of the SFE per free-fall time.

Funder

National Science Foundation

National Institutes of Natural Sciences

National Research Council Canada

Ministry of Science and Technology

Korea Astronomy and Space Science Institute

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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1. Unraveling the Mystery of the Low CO-to-H2 Conversion Factor in Starburst Galaxies: RADEX Modeling of the Antennae;The Astrophysical Journal;2024-08-01

2. Infrared radiation feedback does not regulate star cluster formation;Monthly Notices of the Royal Astronomical Society;2022-09-24

3. Two interacting galaxies hiding as one, revealed by MaNGA;Astronomy & Astrophysics;2021-09

4. Highly turbulent gas on GMC scales in NGC 3256, the nearest luminous infrared galaxy;Monthly Notices of the Royal Astronomical Society;2020-11-07

5. Spatially resolved star formation and fuelling in galaxy interactions;Monthly Notices of the Royal Astronomical Society;2020-10-08

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