Interpretation of the Center-Filled Emission from the Supernova Remnant W44
arXiv:astro-ph/9705239 · doi:10.1086/304717
Abstract
(Abridged) We have investigated two evolutionary scenarios advanced to explain the centrally-brightened X-ray morphology of the supernova remnant (SNR) W44: (1) a model involving the slow thermal evaporation of clouds engulfed by a supernova blast wave as it propagates though a clumpy interstellar medium (ISM), and (2) a hydrodynamical simulation of a blast wave propagating through a homogeneous ISM, including the effects of radiative cooling. Both models can have their respective parameters tuned to approximate the remnant's morphology. The mean temperature of the hot plasma in W44 (~0.9 keV) as determined by our nonequilibrium ionization X-ray spectral analysis provides the essential key to discriminate between these scenarios. Based on the size (using the well established distance of 3 kpc) and temperature of W44, the dynamical evolution predicted by the cloud evaporation model gives an age for the SNR of merely 6500 yr. We argue that, because this age is inconsistent with the characteristic age (approx. 20000 yr) of the associated PSR 1853+01, this model cannot provide the explanation for the center-filled morphology. We favor the radiative-phase shock model since it can reproduce both the morphology and age of W44 assuming reasonable values for the initial explosion energy in the range 0.7E51 to 0.9E51 ergs and the ambient ISM density of between 3 and 4 cm**-3.
31 pages, including 4 postscript figs, LaTeX, accepted by Ap.J
Cited by in corpus (41)
- Supernova Remnants in Molecular Clouds
- Nonthermal Emission from a Supernova Remnant in a Molecular Cloud
- The Mouse That Soared: High Resolution X-ray Imaging of the Pulsar-Powered Bow Shock G359.23-0.82
- Ionization Equilibrium Timescales in Collisional Plasmas
- Modeling W44 as a Supernova Remnant in a Density Gradient, with a Partially Formed Dense Shell and Thermal Conduction in the Hot Interior
- The gas-to-extinction ratio and the gas distribution in the Galaxy
- Enhanced abundances in three large-diameter mixed-morphology supernova remnants
- Initial spin periods of neutron stars in supernova remnants
- Ionization States and Plasma Structures of Mixed-morphology SNRs Observed with ASCA
- Comparing Neutron Star Kicks to Supernova Remnant Asymmetries
- An X-ray Search for Compact Central Sources in Supernova Remnants I: SNRs G093.3+6.9, G315.4-2.3, G084.2+0.8, & G127.1+0.5
- ROSAT/Asca Observations of the Mixed-Morphology Supernova Remnant W28
- Recombining Plasma and Hard X-ray Filament in the Mixed-Morphology Supernova Remnant W44
- Chandra Observations and Models of the Mixed-Morphology Supernova Remnant W44: Global Trends
- A Chandra ACIS view of the Thermal Composite Supernova Remnant 3C391
- An X-Ray Study of the Supernova Remnant G290.1-0.8
- ASCA Observations of the Thermal Composite Supernova Remnant 3C 391
- The imprints of the last jets in core collapse supernovae
- Kinematics of Shocked Molecular Gas Adjacent to the Supernova Remnant W44
- The Thermal Composite Supernova Remnant Kes 27 as Viewed by CHANDRA: Shock Reflection from a Cavity Wall
- Non-equilibrium ionization in mixed-morphology supernova remnants
- Deep XMM-Newton Observations Reveal the Origin of Recombining Plasma in the Supernova Remnant W44
- Infrared Supernova Remnants and their Infrared to X-ray Flux Ratios
- Numerical simulations of supernova remnants in turbulent molecular clouds
- The Metal-enriched Thermal Composite Supernova Remnant Kesteven 41 (G337.8-0.1) in a Molecular Environment
- A New ASCA and ROSAT Study of the Supernova Remnant: G272.2-3.2
- Radiative Supernova Remnants and Supernova Feedback
- Spitzer observations of supernova remnants: II. Physical conditions and comparison with HH7 and HH54
- Velocity Gradients: Magnetic Field Tomography towards the Supernova Remnant W44
- A Chandra X-ray study of the mixed-morphology supernova remnant 3C400.2
- XMM-Newton detection of the supernova remnant G304.6+0.1 (Kes 17)
- G65.2+5.7: A Thermal Composite Supernova Remnant With a Cool Shell
- BeppoSAX observation of the composite remnant G327.1-1.1
- The X-Ray Structure of the Supernova Remnant 3C 400.2
- XMM-Newton, Chandra, and CGPS observations of the Supernova Remnants G85.4+0.7 and G85.9-0.6
- G332.5-5.6, a new Galactic supernova remnant
- CTIO, ROSAT HRI and Chandra ACIS Observations of the Archetypical Mixed-Morphology Supernova Remnant W28 (G6.4-0.1)
- The faint supernova remnant G 34.7-0.4 (W44)
- An XMM-Newton Study of the Mixed-Morphology Supernova Remnant G346.6-0.2
- Discovery of thermal X-ray emission in the Supernova Remnant G337.8-0.1 (Kes 41)
- The pulsar wind nebula around B1853+01 in X-rays