High-resolution, 3D radiative transfer modelling V. A detailed model of the M51 interacting pair
arXiv:2009.07280 · doi:10.1051/0004-6361/202038939
Abstract
Investigating the dust heating mechanisms in galaxies provides a deeper understanding of how the internal energy balance drives their evolution. Over the last decade, radiative transfer simulations based on the Monte Carlo method have underlined the role of the various stellar populations heating the diffuse dust. Beyond the expected heating through ongoing star formation, both older stellar population (> 8Gyr) and even AGN can contribute energy to the infrared emission of diffuse dust. Here, we examine how the radiation of an external heating source, like the less massive galaxy NGC5195, in the M51 interacting system, could affect the heating of the diffuse dust of its parent galaxy, NGC5194, and vice versa. To quantify the exchange of energy between the two galaxies we use SKIRT, a state-of-the-art Monte Carlo radiative transfer code. In the interest of modelling, the assumed centre-to-centre distance separation between the two galaxies is 10kpc. Our model reproduces the global SED of the system, and it closely matches the observed images. In total, 40.7% of the intrinsic stellar radiation of the combined system is absorbed by dust. Furthermore, we quantify the contribution of the various dust heating sources in the system, and find that the young stellar population of NGC5194 is the predominant dust-heating agent, with a global heating fraction of 71.2%. Another 23% is provided by the older stellar population of the same galaxy, while the remaining 5.8% has its origin in NGC5195. Locally, we find that the regions of NGC5194 closer to NGC5195 are significantly affected by the radiation field of the latter, with the absorbed energy fraction rising up to 38%. The contribution of NGC5195 remains under the percentage level in the outskirts of the disc of NGC5194. This is the first time that the heating of the diffuse dust by a companion galaxy is quantified in a nearby interacting system.
References in corpus (44)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- UV Star Formation Rates in the Local Universe
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- Structural Properties of Pseudo-Bulges, Classical Bulges and Elliptical Galaxies: an SDSS Perspective
- Galaxy Pairs in the Sloan Digital Sky Survey I: Star Formation, AGN Fraction, and the Luminosity/Mass-Metallicity Relation
- The effect of galaxy mass ratio on merger--driven starbursts
- Star formation efficiency in galaxy interactions and mergers: a statistical study
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- Kinematic Structure of Merger Remnants
- SKIRT: an Advanced Dust Radiative Transfer Code with a User-Friendly Architecture
- Variations of the Mid-IR Aromatic Features Inside and Among Galaxies
- Modelling the Pan-Spectral Energy Distribution of Starburst Galaxies: IV The Controlling Parameters of the Starburst SED
- Minor Galaxy Interactions: Star Formation Rates and Galaxy Properties
- Cloud Scale ISM Structure and Star Formation in M51
- UV Dust Attenuation in Star-forming Galaxies: II Calibrating the A(UV) vs. L_TIR/L_UV relation
- Interacting galaxies on FIRE-2: The connection between enhanced star formation and interstellar gas content
- DustPedia - A Definitive Study of Cosmic Dust in the Local Universe
- Old and young stellar populations in DustPedia galaxies and their role in dust heating
- Incidence of WISE-Selected Obscured AGNs in Major Mergers and Interactions from the SDSS
- SDSS-IV MaNGA: Effects of Morphology in the global and local Star Formation Main Sequences
- The PAH emission characteristics of the reflection nebula NGC2023
- The distribution of interstellar dust in CALIFA edge-on galaxies via oligochromatic radiative transfer fitting
- High-resolution, 3D radiative transfer modeling : I. The grand-design spiral galaxy M51
- SDSS-IV MANGA: Spatially Resolved Star Formation Main Sequence and LI(N)ER Sequence
- A hidden reservoir of Fe/FeS in interstellar silicates?
- The Herschel Exploitation of Local Galaxy Andromeda (HELGA) VII: A SKIRT radiative transfer model and insights on dust heating
- The resolved star-formation relation in nearby active galactic nuclei
- Measuring star formation with resolved observations: the test case of M33
- A panchromatic spatially resolved analysis of nearby galaxies -- II. The main sequence - gas relation at sub-kpc scale in grand-design spirals
- The sub-galactic and nuclear main sequences for local star-forming galaxies
- Revealing the dust attenuation properties on resolved scales in NGC628 with SWIFT UVOT data
- High-Resolution Radiative Transfer Modelling of M33
- On the Spatially Resolved Star Formation History in M51 I: Hybrid UV+IR Star Formation Laws and IR Emission from Dust Heated by Old Stars
- A panchromatic spatially-resolved analysis of nearby galaxies -- I. Sub-kpc scale Main Sequence in grand-design spirals
- CO observations of major merger pairs at z=0: Molecular gas mass and star formation
- High-resolution, 3D radiative transfer modelling III. The DustPedia barred galaxies
- SKIRT: hybrid parallelization of radiative transfer simulations
- Deep Imaging of M51: a New View of the Whirlpool's Extended Tidal Debris
- High-resolution, 3D radiative transfer modelling. II. The early-type spiral galaxy M81
- High-resolution, 3D radiative transfer modelling IV. AGN-powered dust heating in NGC 1068
- A radiative transfer model for the spiral galaxy M33
Cited by in corpus (18)
- On the duration of the embedded phase of star formation
- Dissecting Nearby Galaxies with piXedfit: I. Spatially Resolved Properties of Stars, Dust, and Gas as Revealed by Panchromatic SED Fitting
- High-resolution synthetic UV-submm images for Milky Way-mass simulated galaxies from the ARTEMIS project
- Geometry effects on dust attenuation curves with different grain sources at high redshift
- Galaxies decomposition with spiral arms -- II: A multiwavelength case study of M 51
- The stratification of ISM properties in the edge-on galaxy NGC 891 revealed by NIKA2
- Less Wound and More Asymmetric: JWST Confirms the Evolution of Spiral Structure in Galaxies at
- A radiation transfer model for the Milky Way. II The global properties and large scale structure
- A high-resolution extinction mapping technique for face-on disc galaxies
- Decoding NGC 628 with radiative transfer methods
- Deriving the intrinsic properties of M51 with radiative transfer models
- Uncovering the truth about M101, NGC 3938, and their significant others through radiative transfer
- Predicting far-infrared maps of galaxies via machine learning techniques
- MeerKAT radio continuum imaging of nearby star-forming spirals in the NGC 6221, NGC 3256/3263, and NGC 2434 galaxy groups
- The role of young and evolved stars in the heating of dust in local galaxies
- SE3D: Building a radiative transfer emulator to fit panchromatic resolved galaxy observations with 3D models of dust and stars
- Modelling the cold dust in nearby spiral galaxies with radiative transfer
- Analysis of spatially resolved stellar populations and emission line properties in nearby galaxies with J-PLUS data. II-Results for the M51 group and first comparison with the M101 group