The dust content of the Crab Nebula

Author:

De Looze I12ORCID,Barlow M J2ORCID,Bandiera R3ORCID,Bevan A2ORCID,Bietenholz M F45ORCID,Chawner H6,Gomez H L6,Matsuura M6ORCID,Priestley F2,Wesson R2

Affiliation:

1. Sterrenkundig Observatorium, Ghent University, Krijgslaan 281 S9, B-9000 Gent, Belgium

2. Department of Physics & Astronomy, University College London, Gower Street, London WC1E 6BT, UK

3. Osservatorio Astrofisico di Arcetri, Largo E. Fermi 5, I-50125 Firenze, Italy

4. Hartebeesthoek Radio Observatory, PO Box 443, Krugersdorp 1740, South Africa

5. Department of Physics and Astronomy, York University, Toronto, M3J 1P3 ON, Canada

6. School of Physics and Astronomy, Cardiff University, Queens Buildings, The Parade, Cardiff CF24 3AA, UK

Abstract

ABSTRACT We have modelled the near-infrared to radio images of the Crab Nebula with a Bayesian SED model to simultaneously fit its synchrotron, interstellar (IS), and supernova dust emission. We infer an IS dust extinction map with an average AV = 1.08 ± 0.38 mag, consistent with a small contribution (${\lesssim }22{{\ \rm per\ cent}}$) to the Crab’s overall infrared emission. The Crab’s supernova dust mass is estimated to be between 0.032 and 0.049 M⊙ (for amorphous carbon grains) with an average dust temperature Tdust = 41 ± 3 K, corresponding to a dust condensation efficiency of 8–12 ${{\ \rm per\ cent}}$. This revised dust mass is up to an order of magnitude lower than some previous estimates, which can be attributed to our different IS dust corrections, lower SPIRE flux densities, and higher dust temperatures than were used in previous studies. The dust within the Crab is predominantly found in dense filaments south of the pulsar, with an average V-band dust extinction of AV = 0.20–0.39 mag, consistent with recent optical dust extinction studies. The modelled synchrotron power-law spectrum is consistent with a radio spectral index αradio = 0.297 ± 0.009 and an infrared spectral index αIR = 0.429 ± 0.021. We have identified a millimetre excess emission in the Crab’s central regions, and argue that it most likely results from two distinct populations of synchrotron emitting particles. We conclude that the Crab’s efficient dust condensation (8–12 ${{\ \rm per\ cent}}$) provides further evidence for a scenario where supernovae can provide substantial contributions to the IS dust budgets in galaxies.

Funder

Research Foundation Flanders

European Research Council

Science and Technology Facilities Council

Cardiff University

Imperial College London

Costume Society of America

China Earthquake Administration

Centre National d’Etudes Spatiales

Centre National de la Recherche Scientifique

Agenzia Spaziale Italiana

National Aeronautics and Space Administration

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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