Destruction of Interstellar Dust in Evolving Supernova Remnant Shock Waves
arXiv:1502.00929 · doi:10.1088/0004-637X/803/1/7
Abstract
Supernova generated shock waves are responsible for most of the destruction of dust grains in the interstellar medium (ISM). Calculations of the dust destruction timescale have so far been carried out using plane parallel steady shocks, however that approximation breaks down when the destruction timescale becomes longer than that for the evolution of the supernova remnant (SNR) shock. In this paper we present new calculations of grain destruction in evolving, radiative SNRs. To facilitate comparison with the previous study by Jones et al. (1996), we adopt the same dust properties as in that paper. We find that the efficiencies of grain destruction are most divergent from those for a steady shock when the thermal history of a shocked gas parcel in the SNR differs significantly from that behind a steady shock. This occurs in shocks with velocities >~ 200 km/s for which the remnant is just beginning to go radiative. Assuming SNRs evolve in a warm phase dominated ISM, we find dust destruction timescales are increased by a factor of ~2 compared to those of Jones et al. (1996), who assumed a hot gas dominated ISM. Recent estimates of supernova rates and ISM mass lead to another factor of ~3 increase in the destruction timescales, resulting in a silicate grain destruction timescale of ~2-3 Gyr. These increases, while not able resolve the problem of the discrepant timescales for silicate grain destruction and creation, are an important step towards understanding the origin, and evolution of dust in the ISM.
30 pages, 8 figures, accepted for publication in the Astrophysical Journal
References in corpus (6)
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- Vertical structure of a supernova-driven turbulent magnetized ISM
- Interstellar and Ejecta Dust in the Cas A Supernova Remnant
- Dust Destruction Rates and Lifetimes in the Magellanic Clouds
- Simulating Anisotropic Thermal Conduction in Supernova Remnants, Implications for the Interstellar Medium
- Determination of a temporally and spatially resolved Supernova rate from OB-stars within 5kpc
Cited by in corpus (33)
- Modelling Dust Evolution in Galaxies with a Multiphase, Inhomogeneous ISM
- The Polycyclic Aromatic Hydrocarbon Mass Fraction on a 10 pc scale in the Magellanic Clouds
- The origin of dust in galaxies across cosmic time
- Thermal and nonthermal dust sputtering in hydrodynamical simulations of the multiphase interstellar medium
- JINGLE -- IV. Dust, HI gas and metal scaling laws in the local Universe
- A Far Ultraviolet Spectroscopic Explorer Survey of Interstellar Molecular Hydrogen in the Galactic Disk
- On the Formation of Molecular Clumps in QSO Outflows
- The Quest for the Missing Dust: II -- Two Orders of Magnitude of Evolution in the Dust-to-Gas Ratio Resolved Within Local Group Galaxies
- Supernovae within Pre-existing Wind-Blown Bubbles: Dust Injection vs. Ambient Dust Destruction
- Revisiting the dust destruction efficiency of supernovae
- The fate of the interstellar medium in early-type galaxies. I. First direct measurement of the timescale of dust removal
- Turbulence and Energetic Particles in Radiative Shock Waves in the Cygnus Loop I: Shock Properties
- Laboratory experiments on the low temperature formation of carbonaceous grains in the ISM
- Turbulence and Particle Acceleration in Radiative Shock Waves in the Cygnus Loop II: Development of Postshock Turbulence
- Late-time cosmic evolution of dust: solving the puzzle
- The turbulent life of dust grains in the supernova-driven, multi-phase interstellar medium
- Exploring the relation between dust mass and galaxy properties using Dusty SAGE
- Mid-infrared extinction and fresh silicate dust towards the Galactic Center
- AlFoCS + F3D II: unexpectedly low gas-to-dust ratios in the Fornax galaxy cluster
- Properties of shocked dust grains in supernova remnants
- The efficiency of grain growth in the diffuse interstellar medium
- Constraints on interstellar dust models from extinction and spectro-polarimetry
- A Reexamination of Phosphorus and Chlorine Depletions in the Diffuse Interstellar Medium
- Mid-infrared imaging of Supernova 1987A
- Restructuring and destruction of hydrocarbon dust in the interstellar medium
- Infrared Emission from Supernova Remnants: Formation and Destruction of Dust
- Supernova dust destruction in the magnetized turbulent ISM
- SOFIA/HAWC+ observations of the Crab Nebula: dust properties from polarised emission
- Spitzer and Herschel studies of dust in supernova remnants in the Small Magellanic Cloud
- Shocks and Photoionization of the Inner 650 AU Jet of the Interacting Binary Star R Aquarii from Multiwavelength Hubble Space Telescope Observations
- Dust destruction by the supernova remnant forward shock in a turbulent interstellar medium
- Impact of the external radiation field on the structure and evolution of supernova remnants
- The Quest for the Missing Dust: I -- Restoring Large Scale Emission in Herschel Maps of Local Group Galaxies