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A stubbornly large mass of cold dust in the ejecta of supernova 1987A

  • M. Matsuura
  • , E. Dwek
  • , M. J. Barlow
  • , B. Babler
  • , M. Baes
  • , M. Meixner
  • , José Cernicharo
  • , Geoff C. Clayton
  • , L. Dunne
  • , C. Fransson
  • , Jacopo Fritz
  • , Walter Gear
  • , H. L. Gomez
  • , M. A.T. Groenewegen
  • , R. Indebetouw
  • , R. J. Ivison
  • , A. Jerkstrand
  • , V. Lebouteiller
  • , T. L. Lim
  • , P. Lundqvist
  • C. P. Pearson, J. Roman-Duval, P. Royer, Lister Staveley-Smith, B. M. Swinyard, P. A.M. Van Hoof, J. Th Van Loon, Joris Verstappen, Roger Wesson, Giovanna Zanardo, Joris A.D.L. Blommaert, Leen Decin, W. T. Reach, George Sonneborn, Griet C. Van De Steene, Jeremy A. Yates
  • University College London
  • NASA Goddard Space Flight Center
  • University of Wisconsin-Madison
  • Ghent University
  • Space Telescope Science Institute
  • CSIC-INTA - Centro de Astrobiología (CAB)
  • Louisiana State University
  • University of Canterbury
  • University of Edinburgh, Institute for Astronomy
  • Stockholm University
  • Cardiff University
  • Royal Observatory of Belgium
  • University of Virginia
  • National Radio Astronomy Observatory
  • ESO
  • Queen's University of Belfast
  • Université Paris Diderot
  • RAL Space
  • KU Leuven
  • The University of Western Australia
  • ARC Centre of Excellence for All-Sky Astrophysics (CAASTRO)
  • University of Keele
  • University of Groningen
  • Alonso de Córdova 3107
  • Vrije Universiteit Brussel
  • Universities Space Research Association

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

160 Citations (Scopus)

Abstract

We present new Herschel photometric and spectroscopic observations of Supernova 1987A, carried out in 2012. Our dedicated photometric measurements provide new 70 μm data and improved imaging quality at 100 and 160 μm compared to previous observations in 2010. Our Herschel spectra show only weak CO line emission, and provide an upper limit for the 63 μm [O I] line flux, eliminating the possibility that line contaminations distort the previously estimated dust mass. The far-infrared spectral energy distribution (SED) is well fitted by thermal emission from cold dust. The newly measured 70 μm flux constrains the dust temperature, limiting it to nearly a single temperature. The far-infrared emission can be fitted by 0.5 ± 0.1 M of amorphous carbon, about a factor of two larger than the current nucleosynthetic mass prediction for carbon. The observation of SiO molecules at early and late phases suggests that silicates may also have formed and we could fit the SED with a combination of 0.3 M of amorphous carbon and 0.5 M of silicates, totalling 0.8 M of dust. Our analysis thus supports the presence of a large dust reservoir in the ejecta of SN 1987A. The inferred dust mass suggests that supernovae can be an important source of dust in the interstellar medium, from local to high-redshift galaxies.

Original languageEnglish
Article number50
JournalAstrophysical Journal
Volume800
Issue number1
DOIs
Publication statusPublished - 10 Feb 2015
Externally publishedYes

Keywords

  • ISM: supernova remnants
  • dust, extinction
  • infrared: ISM
  • infrared: stars
  • submillimeter: ISM
  • submillimeter: stars
  • supernovae: individual (Supernova 1987A)

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