The distribution of the ISM in the Milky Way A three-dimensional large-scale model
arXiv:astro-ph/0607638 · doi:10.1051/0004-6361:20054618
Abstract
We use the COBE/DIRBE (1.2, 2.2, 60, 100, 140, and 240 m) maps and the COBE/FIRAS spectra (for the wavelength range 100 - 1000 m) to constrain a model for the spatial distribution of the dust, the stars, and the gas in the Milky Way. By assuming exponential axisymmetric distributions for the dust and the stars and by performing the corresponding radiative transfer calculations we closely (given the simple geometry of the model) reproduce the FIR and NIR maps of the Milky Way. Similar distributions for the atomic and molecular hydrogen in the disk are used (with an inner cut-off radius for the atomic hydrogen) to fit the gas data. The star formation rate as a function of the Galactic radius is derived from the FIR emission and is well in agreement with existing estimates from various star formation tracers. The gas surface density is plotted against the star formation rate density and an ``intrinsic'' Galactic Schmidt law is derived with excellent agreement with the ``external'' Schmidt law found for spiral galaxies. The Milky Way is found to consume and of its gas in the outer and inner regions respectively (for a period of 0.1 Gyr) to make stars. The dust-induced B-V color excess observed in various directions and distances (up to kpc) with well-studied Cepheid stars is compared with the model predictions showing a good agreement. The simple assumption of exponential distributions of stars and dust in the Galaxy is found to be quite instructive and adequate in modeling all the available data sets from 0.45 m (B-band) to 1000 m.
14 Pages, 10 figures
Cited by in corpus (52)
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- The present-day star formation rate of the Milky-Way determined from Spitzer detected young stellar objects
- The Gaia-ESO Survey: the Galactic Thick to Thin Disc transition
- Cosmic-ray propagation with DRAGON2: I. numerical solver and astrophysical ingredients
- Dark matter local density determination: recent observations and future prospects
- A radiation transfer model for the Milky-Way: I. Radiation fields and application to High Energy Astrophysics
- Radial distribution of dust, stars, gas, and star-formation rate in DustPedia face-on galaxies
- A Herschel [CII] Galactic plane survey III: [CII] as a tracer of star formation
- Absorption of Very High Energy Gamma Rays in the Milky Way
- Aspect Ratio Dependence of the Free-Fall Time for Non-Spherical Symmetries
- The Star Formation Rate of the Milky Way as seen by Herschel
- 3.55 keV photon lines from axion to photon conversion in the Milky Way and M31
- A clumpy-cloud PDR model of the global far-infrared line emission of the Milky Way
- Three-Dimensional Distribution of the Interstellar Dust in the Milky Way
- Calculation of the local density of relic neutrinos
- A Systematic Study of the dust of Galactic Supernova Remnants I. The Distance and the Extinction
- The volumetric star formation law for nearby galaxies -- Extension to dwarf galaxies and low-density regions
- The volumetric star formation law in the Milky Way
- The global structure of magnetic fields and gas in simulated Milky Way-analogue galaxies
- Exploring the s-process history in the Galactic disk: Cerium abundances and gradients in Open Clusters from the OCCAM/APOGEE sample
- The resolved scaling relations in DustPedia: Zooming in on the local Universe
- The Herschel Virgo Cluster Survey. XX. Dust and gas in the foreground Galactic cirrus
- Neutrino clustering in the Milky Way and beyond
- Modeling the effects of dust evolution on the SEDs of galaxies of different morphological type
- Stellar Core-Merger-Induced Collapse: New Formation Pathways for Black Holes, Thorne-ytkow objects, Magnetars and Superluminous Supernovae
- A star formation study of the ATLAS3D early-type galaxies with the AKARI all-sky survey
- Time-dependent modeling of extended thin decretion disks of critically rotating stars
- The Star Formation Law in a Multifractal ISM
- Testing MOdified Gravity (MOG) theory and dark matter model in Milky Way using the local observables
- Interstellar Polarization Survey II: General Interstellar Medium
- Self-consistent interpretations of the multi-wavelength gamma-ray spectrum of LHAASO J06213755
- Beyond the Solar Circle Trends in Massive Star Formation Between the Inner and Outer Galaxy
- HII regions and high-mass starless clump candidates I: Catalogs and properties
- Constraining density and metallicity of the Milky Way's hot gas halo from O VII spectra and ram-pressure stripping
- Quantifying the information impact of future searches for exoplanetary biosignatures
- Galactic Population Synthesis of Radioactive Nucleosynthesis Ejecta
- A radiation transfer model for the Milky Way. II The global properties and large scale structure
- Thermal and annihilation radiation in the quark nugget model of dark matter
- 36 GHz methanol lines from nearby galaxies: maser or quasi-thermal emission?
- Are Milky-Way-like galaxies like the Milky Way? A view from SDSS-IV/MaNGA
- Synthetic dust polarization emission maps at 353 GHz for an observer placed inside a Local Bubble-like cavity
- Angular momentum, accretion and radial flows in chemodynamical models of spiral galaxies
- GalaxyGenius: Mock galaxy image generator for various telescopes from hydrodynamical simulations
- Observability of HOFNARs with SRG/eROSITA
- Cosmological implications of the Gaia Milky Way declining rotation curve
- Leptonic and hadronic models of high-energy nebula around V4641 Sgr
- Star Formation in the Galactic Center
- First constraints on axion-like particles from Galactic sub-PeV gamma rays
- A self-consistent wave description of axion miniclusters and their survival in the galaxy
- TeV-PeV Gamma-ray and Neutrino Emission in the Galactic Plane
- Determination of the best dark matter profile for the Milky Way with Gaia DR3 using Bayesian Model Comparison
- A newly born spider system at the core of a radio shell: Evidence for a low-energy supernova