The dust content of the Crab Nebula
arXiv:1906.02203 · doi:10.1093/mnras/stz1533
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 and supernova dust emission. We infer an interstellar dust extinction map with an average =1.080.38 mag, consistent with a small contribution (<22%) 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 =413K, corresponding to a dust condensation efficiency of 8-12%. This revised dust mass is up to an order of magnitude lower than some previous estimates, which can be attributed to our different interstellar dust corrections, lower SPIRE flux densities, and higher dust temperature 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 =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 =0.2970.009 and an infrared spectral index =0.4290.021. 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%) provides further evidence for a scenario where supernovae can provide substantial contributions to the interstellar dust budgets in galaxies.
33 pages, 17 figures, Manuscript accepted for publication in MNRAS. Accepted on 31/05/2019. Deposited on 31/05/2019
References in corpus (25)
- The James Webb Space Telescope
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- A dusty, normal galaxy in the epoch of reionization
- Dust in the reionization era: ALMA observations of a =8.38 Galaxy
- 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
- Rapid formation of large dust grains in the luminous supernova SN 2010jl
- A stubbornly large mass of cold dust in the ejecta of Supernova 1987A
- Dust Destruction in the High-Velocity Shocks Driven by Supernovae in the Early Universe
- Condensation of dust in the ejecta of type II-P supernovae
- The dust mass in Cassiopeia A from a spatially resolved Herschel analysis
- The timing and location of dust formation in the remnant of SN 1987A
- Spitzer Space Telescope Infrared Imaging and Spectroscopy of the Crab Nebula
- The dust and gas content of the Crab Nebula
- Rayleigh-Taylor instability in Magnetohydrodynamic Simulations of the Crab Nebula
- Broadband X-ray Imaging and Spectroscopy of the Crab Nebula and Pulsar with NuSTAR
- Interstellar and Ejecta Dust in the Cas A Supernova Remnant
- Far-infrared and sub-mm observations of the Crab nebula
- A Massive Shell of Supernova-formed Dust in SNR G54.1+0.3
- Dust masses for SN 1980K, SN1993J and Cassiopeia A from red-blue emission line asymmetries
- The Crab Nebula's Composition and Precursor Star Mass
- The mass, location and heating of the dust in the Cassiopeia A supernova remnant
- The variability of the Crab Nebula in radio: No radio counterpart to gamma-ray flares
- A Spectroscopic Study of Nuclear Processing and Production of Anomalously Strong Lines in the Crab Nebula
- Dusty globules in the Crab Nebula
Cited by in corpus (24)
- JINGLE -- IV. Dust, HI gas and metal scaling laws in the local Universe
- The Galactic Dust-Up: Modeling Dust Evolution in FIRE
- The Quest for the Missing Dust: II -- Two Orders of Magnitude of Evolution in the Dust-to-Gas Ratio Resolved Within Local Group Galaxies
- Revisiting the dust destruction efficiency of supernovae
- Dust masses for a large sample of core-collapse supernovae from optical emission line asymmetries: dust formation on 30-year timescales
- Dust masses and grain size distributions of a sample of Galactic pulsar wind nebulae
- Formation, distribution, and IR emission of dust in the clumpy ejecta of Type II-P core-collapse supernovae, in isotropic and anisotropic scenarios
- Phenomenological modelling of the Crab Nebula's broad band energy spectrum and its apparent extension
- Dust grain size evolution in local galaxies: a comparison between observations and simulations
- Properties of shocked dust grains in supernova remnants
- AlFoCS + F3D II: unexpectedly low gas-to-dust ratios in the Fornax galaxy cluster
- Constraining early-time dust formation in core-collapse supernovae
- The efficiency of grain growth in the diffuse interstellar medium
- SOFIA/HAWC+ observations of the Crab Nebula: dust properties from polarised emission
- A Galactic Dust Devil: far-infrared observations of the Tornado Supernova Remnant candidate
- Spitzer and Herschel studies of dust in supernova remnants in the Small Magellanic Cloud
- Near-Infrared Spectroscopy and Detection of Carbon Monoxide in the Type II Supernova SN 2023ixf
- JWST/MIRI detects the dusty SN1993J about 30 years after explosion
- Dust destruction by the supernova remnant forward shock in a turbulent interstellar medium
- Inferring properties of dust in supernovae with neural networks
- Quantifying the dust in SN 2012aw and iPTF14hls with ORBYTS
- Far-Infrared Emission from a Late Supernova Remnant in an Inhomogeneous Medium
- Far-infrared Polarization of the Supernova Remnant Cassiopeia A with SOFIA HAWC+
- The impact of metallicity-dependent dust destruction on the dust-to-metals ratio in galaxies