A radiation transfer model for the Milky Way. II The global properties and large scale structure
arXiv:2111.02180 · doi:10.1093/mnras/stab2771
Abstract
We obtained an axi-symmetric model for the large-scale distribution of stars and dust in the Milky Way (MW) using a radiative transfer code that can account for the existing near-infrared (NIR)/mid-infrared/submm all-sky emission maps of our Galaxy. We find that the MW has a star-formation rate of /yr, a stellar mass , and a specific SFR that is relatively constant with radius (except for the inner 1 kpc). We identified an inner radius \,kpc beyond which the stellar emissivity and dust distribution fall exponentially. For the emissivities fall linearly towards the centre. The old stellar populations in the disk have an exponential scalelength that increases monotonically from \,kpc in the NIR, to \,kpc at the shorter optical bands, and a scaleheight that varies with radial distance, from \,pc in the centre to \,pc at the solar radius. The young stellar populations have a scalelength of \,kpc and a scaleheight that varies from \,pc in the centre to \,pc at the solar radius. We discovered an inner stellar disk within the central 4.5 kpc, which we associate with the extended long bar of the MW. Most of the obscured star formation happens within this inner thin disk. The diffuse dust is mainly distributed in a disk with scalelength \,kpc and scaleheight \,kpc. We give the first derivation of the MW attenuation curve and present it as a functional fit to the model data. We find the MW to lie in the Green Valley of the main sequence relation for spiral galaxies.
Accepted for publication in MNRAS, 25 pages, 21 figures
References in corpus (34)
- The Gaia mission
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- The Structure of the Milky Way's Bar Outside the Bulge
- On the mass-to-light ratio of the local Galactic disc and the optical luminosity of the Galaxy
- The present-day star formation rate of the Milky-Way determined from Spitzer detected young stellar objects
- The Millennium Galaxy Catalogue: the B-band attenuation of bulge and disc light and the implied cosmic dust and stellar mass densities
- A radiation transfer model for the Milky-Way: I. Radiation fields and application to High Energy Astrophysics
- The distribution of the ISM in the Milky Way A three-dimensional large-scale model
- Tracing the long bar with red-clump giants
- A Map of Dust Reddening to 4.5 kpc from Pan-STARRS1
- Galaxy And Mass Assembly (GAMA): the wavelength-dependent sizes and profiles of galaxies revealed by MegaMorph
- The Structure of Molecular Clouds: I - All Sky Near Infrared Extinction Maps
- 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
- The long Galactic bar as seen by UKIDSS Galactic Plane Survey
- Modelling the spectral energy distribution of galaxies. IV Correcting apparent disk scalelengths and central surface brightnesses for the effect of dust at optical and near-infrared wavelengths
- The Herschel Exploitation of Local Galaxy Andromeda (HELGA) VII: A SKIRT radiative transfer model and insights on dust heating
- A self-consistent model of Galactic stellar and dust infrared emission and the abundance of polycyclic aromatic hydrocarbons
- Galaxy And Mass Assembly (GAMA): In Search of Milky-Way Magellanic Cloud Analogues
- Probing interstellar turbulence in cirrus with deep optical imaging: no sign of energy dissipation at 0.01 pc scale
- A three dimensional extinction map of the Galactic Anticentre from multi-band photometry
- Galaxy And Mass Assembly (GAMA): Gas Fuelling of Spiral Galaxies in the Local Universe I. - The Effect of the Group Environment on Star Formation in Spiral Galaxies
- Mapping the Galactic disk with the LAMOST and Red clump sample: V: On the origin of the "young" [/Fe]-enhanced stars
- Three-dimensional extinction mapping using Gaussian random fields
- High-Resolution Radiative Transfer Modelling of M33
- High-resolution, 3D radiative transfer modelling III. The DustPedia barred galaxies
- High-resolution, 3D radiative transfer modelling. II. The early-type spiral galaxy M81
- Extended Emission by Dust in the Dwarf Galaxy UGC 10445
- High-resolution, 3D radiative transfer modelling IV. AGN-powered dust heating in NGC 1068
- High-resolution, 3D radiative transfer modelling V. A detailed model of the M51 interacting pair
- The initial mass function of stars and the star-formation rates of galaxies
- Gaia DR2 giants in the Galactic dust -- II. Application of the reddening maps and models
- Constraints on the dust extinction law of the Galaxy with Swift/UVOT, Gaia and 2MASS
- Radiative transfer in disc galaxies V. The accuracy of the KB approximation
Cited by in corpus (8)
- The problem of dust attenuation in photometric decomposition of edge-on galaxies and possible solutions
- Decoding NGC 628 with radiative transfer methods
- Uncovering the truth about M101, NGC 3938, and their significant others through radiative transfer
- Born to be Starless: Revisiting the Missing Satellite Problem
- Cool Interstellar Medium as an Evolutionary Tracer in ALMA-Observed Local Dusty Early-Type Galaxies
- Ultra-high-energy -ray emission associated with the tail of a bow-shock pulsar wind nebula
- Comparing the structural parameters of the Milky Way to other spiral galaxies
- Predicting interstellar radiation fields from chemical evolution models