The Importance of Physical Models for Deriving Dust Masses and Grain Size Distributions in Supernova Ejecta I: Radiatively Heated Dust in the Crab Nebula
arXiv:1302.5452 · doi:10.1088/0004-637X/774/1/8
Abstract
Recent far-infrared (IR) observations of supernova remnants (SNRs) have revealed significantly large amounts of newly-condensed dust in their ejecta, comparable to the total mass of available refractory elements. The dust masses derived from these observations assume that all the grains of a given species radiate at the same temperature, regardless of the dust heating mechanism or grain radius. In this paper, we derive the dust mass in the ejecta of the Crab Nebula, using a physical model for the heating and radiation from the dust. We adopt a power-law distribution of grain sizes and two different dust compositions (silicates and amorphous carbon), and calculate the heating rate of each dust grain by the radiation from the pulsar wind nebula (PWN). We find that the grains attain a continuous range of temperatures, depending on their size and composition. The total mass derived from the best-fit models to the observed IR spectrum is 0.019-0.13 solar masses, depending on the assumed grain composition. We find that the power-law size distribution of dust grains is characterized by a power-law index of 3.5-4.0 and a maximum grain size larger than 0.1 microns. The grain sizes and composition are consistent with what is expected for dust grains formed in a Type IIP SN. Our derived dust mass is at least a factor of two less than the mass reported in previous studies of the Crab Nebula that assumed more simplified two-temperature models. The results of this study show that a physical model resulting in a realistic distribution of dust temperatures can constrain the dust properties and affect the derived dust masses. Our study may also have important implications for deriving grain properties and mass estimates in other SNRs and for the ultimate question of whether SNe are major sources of dust in the Galactic interstellar medium (ISM) and in external galaxies.
9 pages, 2 tables, 8 figures, Accepted to The Astrophysical Journal
References in corpus (12)
- The Evolution of Dust in the Early Universe with Applications to the Galaxy SDSS J1148+5251
- Freshly Formed Dust in the Cassiopeia A Supernova Remnant as Revealed by the Spitzer Space Telescope
- A Cool Dust Factory in the Crab Nebula: A Herschel Study of the Filaments
- The chemistry of population III supernova ejecta: II - The nucleation of molecular clusters as a diagnostic for dust in the early universe
- The cycle of interstellar dust in galaxies of different morphological types
- Spitzer Space Telescope Infrared Imaging and Spectroscopy of the Crab Nebula
- Dust input from AGB stars in the Large Magellanic Cloud
- Far-infrared and sub-mm observations of the Crab nebula
- Properties and Spatial Distribution of Dust Emission in the Crab Nebula
- The Crab Nebula's Composition and Precursor Star Mass
- Quasar feedback in the early Universe: the case of SDSS J1148+5251
- The Nature of the H2-Emitting Gas in the Crab Nebula
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