Dust in the diffuse interstellar medium: Extinction, emission, linear and circular polarisation
arXiv:1308.3148 · doi:10.1051/0004-6361/201321716
Abstract
We present a model for the diffuse interstellar dust that explains the observed wavelength-dependence of extinction, emission, linear and circular polarisation of light. The model is set-up with a small number of parameters. It consists of a mixture of amorphous carbon and silicate grains with sizes from the molecular domain of 0.5 up to about 500nm. Dust grains with radii larger than 6nm are spheroids. Spheroidal dust particles have a factor 1.5 - 3 larger absorption cross section in the far IR than spherical grains of the same volume. Mass estimates derived from submillimeter observations that ignore this effect are overestimated by the same amount. In the presence of a magnetic field, spheroids may be partly aligned and polarise light. We find that polarisation spectra help to determine the upper particle radius of the otherwise rather unconstrained dust size distribution. Stochastically heated small grains of graphite, silicates and polycyclic aromatic hydrocarbons (PAHs) are included. We tabulate parameters for PAH emission bands in various environments. They show a trend with the hardness of the radiation field that can be explained by the ionisation state or hydrogenation coverage of the molecules. For each dust component its relative weight is specified, so that absolute element abundances are not direct input parameters. The model is confronted with the average properties of the Milky Way, which seems to represent dust in the solar neighbourhood. It is then applied to four specific sight lines including the reflection nebula NGC2023. For these sight lines, we present linear and circular spectro-polarimetric observations obtained with FORS/VLT. Using prolate rather than oblate grains gives a better fit to observed spectra; the axial ratio of the spheroids is typically two and aligned silicates are the dominant contributor to the polarisation.
accepted by A&A Editor
References in corpus (18)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- The distance to the Orion Nebula
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- Tracing Magnetic Fields with Aligned Grains
- Variations of the Mid-IR Aromatic Features Inside and Among Galaxies
- The shape and composition of interstellar silicate grains
- Dust in starburst nuclei and ULIRGs: SED models for observers
- Magnetic Nanoparticles in the Interstellar Medium: Emission Spectrum and Polarization
- A self-consistent model of Galactic stellar and dust infrared emission and the abundance of polycyclic aromatic hydrocarbons
- Theoretical evaluation of PAH dications properties
- Dust processing in photodissociation regions - Mid-IR emission modelling
- Interstellar extinction and interstellar polarization: old and new models
- Properties of Dust Grains Probed with Extinction Curves
- X-Ray Scattering by Nonspherical Grains. I. Oblate Spheroids
- Modelling interstellar extinction and polarization with spheroidal grains
- Systematic variations of interstellar linear polarization and growth of dust grains
Cited by in corpus (72)
- The global dust modelling framework THEMIS (The Heterogeneous dust Evolution Model for Interstellar Solids)
- The Dust Attenuation Law in Galaxies
- Planck 2018 results. XI. Polarized dust foregrounds
- One Relation for All Wavelengths: The Far-Ultraviolet to Mid-Infrared Milky Way Spectroscopic R(V) Dependent Dust Extinction Relationship
- Planck intermediate results. XVII. Emission of dust in the diffuse interstellar medium from the far-infrared to microwave frequencies
- Planck intermediate results. XXIX. All-sky dust modelling with Planck, IRAS, and WISE observations
- Excitation of Polycyclic Aromatic Hydrocarbon (PAH) Emission: Dependence on Size Distribution, Ionization, and Starlight Spectrum and Intensity
- Modelling Dust Evolution in Galaxies with a Multiphase, Inhomogeneous ISM
- Destruction of Interstellar Dust in Evolving Supernova Remnant Shock Waves
- Observational Constraints on the Physical Properties of Interstellar Dust in the Post-Planck Era
- Planck intermediate results. XXI. Comparison of polarized thermal emission from Galactic dust at 353 GHz with interstellar polarization in the visible
- Dust models compatible with Planck intensity and polarization data in translucent lines of sight
- The Dielectric Function of "Astrodust" and Predictions for Polarization in the 3.4m and 10m Features
- Candidate Gravitationally Lensed Dusty Star-forming Galaxies in the Herschel Wide Area Surveys
- Interstellar and Ejecta Dust in the Cas A Supernova Remnant
- Properties of extragalactic dust inferred from linear polarimetry of Type Ia Supernovae
- Infrared spectral energy distribution decomposition of WISE-selected, hyperluminous hot dust-obscured galaxies
- Dust models post-Planck: constraining the far-infrared opacity of dust in the diffuse interstellar medium
- A Dust spectral energy distribution model with hierarchical Bayesian inference. I. Formalism & benchmarking
- The Young and Nearby Normal Type Ia Supernova 2018gv: UV-Optical Observations and the Earliest Spectropolarimetry
- Mapping the Extinction Curve in 3D: Structure on Kiloparsec Scales
- Mitigating Complex Dust Foregrounds in Future CMB Polarization Experiments
- THEMIS 2.0: A self-consistent model for dust extinction, emission, and polarisation
- Statistical description of dust polarized emission from the diffuse interstellar medium -- A RWST approach
- Large Interstellar Polarisation Survey. LIPS I: FORS2 spectropolarimetry in the Southern Hemisphere
- Discovery of six new strongly magnetic white dwarfs in the 20 pc local population
- Polarization in Monte Carlo radiative transfer and dust scattering polarization signatures of spiral galaxies
- Random mixtures of polycyclic aromatic hydrocarbon spectra match interstellar infrared emission
- Using the Starlight Polarization Efficiency Integral to Constrain Shapes and Porosities of Interstellar Grains
- Shiva: the dust destruction model
- The Simons Observatory: Galactic Science Goals and Forecasts
- Observational Evidence Linking Interstellar UV Absorption to PAH Molecules
- Dust emissivity and absorption cross section in DustPedia late-type galaxies
- Polarizing efficiency as a guide of grain growth and interstellar magnetic field properties
- The Origin of the Dust Extinction Curve in Milky Way-like Galaxies
- Star formation in 3CR radio galaxies and quasars at z < 1
- A systematic study of radiative torque grain alignment in the diffuse interstellar medium
- Extinction and dust properties in a clumpy medium
- Effects of grain growth on the interstellar polarization curve
- CRIRES high-resolution near-infrared spectroscopy of diffuse interstellar band profiles. Detection of 12 new DIBs in the YJ band and the introduction of a combined ISM sight line and stellar analysis approach
- On the Optical-to-Silicate Extinction Ratio as a Probe of the Dust Size in Active Galactic Nuclei
- Absorption at 11 microns in the interstellar medium and embedded sources: evidence for crystalline silicates
- Large Interstellar Polarisation Survey II. UV/optical study of cloud-to-cloud variations of dust in the diffuse ISM
- Dark dust II: Properties in the general field of the diffuse ISM
- Spectropolarimetric Constraints on the Nature of Interstellar Grains
- Physical properties of hyperluminous, dust-obscured quasars at : multiwavelength Spectral Energy Distribution analysis and cold gas content revealed by ALMA
- Alma Reveals A Gas-rich, Maximum-starburst In The Hyperluminous, Dust-obscured Quasar W0533-3401 AT
- A new analytical scattering phase function for interstellar dust
- Constraints on interstellar dust models from extinction and spectro-polarimetry
- Discovery of magnetic fields in five DC white dwarfs
- Dust in the Wolf-Rayet Nebula M1-67
- The nature of sub-millimetre galaxies I: A comparison of AGN and star-forming galaxy SED fits
- Disentangling the AGN and Star-Formation Contributions to the Radio-X-ray Emission of Radio-Loud Quasars at 1<z<2
- Radiative transfer of ionizing radiation through gas and dust: grain charging in star forming regions
- Sensitivity of Polarization to Grain Shape: I. Convex Shapes
- CosTuuM: polarized thermal dust emission by magnetically oriented spheroidal grains
- The evolution of hydrocarbon dust grains in the interstellar medium and its influence on the infrared spectra of dust
- Dust in RCW 58: clues to common envelope channel formation?
- Dark Dust III: The high-quality single-cloud reddening curve sample. Scrutinizing extinction curves in the Milky Way
- Composite Circumstellar Dust Grains
- Far-infrared emission of massive stars
- A derivation of nano-diamond optical constants: Here be nano-diamonds
- Appearance of Dusty Filaments at Different Viewing Angles
- The Spheroidal Analog Method for Modeling Irregular Porous Aggregates
- Revisiting the Local Interstellar Radiation Field using Gaia DR3
- Silicon and iron dust in gamma-ray burst host galaxy absorbers
- Measuring the continuum polarization with ESPaDOnS
- Limitations of the modified blackbody fit method for determining molecular cloud properties
- The Binding Energies of Atoms on Amorphous Silicate Dust: A Computational Study
- GRB 180325A: dust grain-size distribution and interstellar iron nanoparticles contribution
- The nature and evolution of a-C(:H) nanoparticle substructures and speculations on the origin of the 3-4m emission bands
- Large Interstellar Polarisation Survey. III. Observational constraints on the structure of grains