The Radial Structure of SNR N103B
arXiv:astro-ph/0209280 · doi:10.1086/344717
Abstract
We report on the results from a Chandra ACIS observation of the young, compact, supernova remnant N103B. The unprecedented spatial resolution of Chandra reveals sub-arcsecond structure, both in the brightness and in spectral variations. Underlying these small-scale variations is a surprisingly simple radial structure in the equivalent widths of the strong Si and S emission lines. We investigate these radial variations through spatially resolved spectroscopy using a plane-parallel, non-equilibrium ionization model with multiple components. The majority of the emission arises from components with a temperature of 1 keV: a fully ionized hydrogen component; a high ionization timescale (n_e*t > 10^12 s cm^-3) component containing Si, S, Ar, Ca, and Fe; and a low ionization timescale (n_e*t ~ 10^{11} s cm^-3) O, Ne, and Mg component. To reproduce the strong Fe Kalpha line, it is necessary to include additional Fe in a hot (> 2 keV), low ionization (n_e*t ~ 10^10.8 s cm^-3) component. This hot Fe may be in the form of hot Fe bubbles, formed in the radioactive decay of clumps of 56Ni. We find no radial variation in the ionization timescales or temperatures of the various components. Rather, the Si and S equivalent widths increase at large radii because these lines, as well as those of Ar and Ca, are formed in a shell occupying the outer half of the remnant. A shell of hot Fe is located interior to this, but there is a large region of overlap between these two shells. In the inner 30% of the remnant, there is a core of cooler, 1 keV Fe. We find that the distribution of the ejecta and the yields of the intermediate mass species are consistent with model prediction for Type Ia events.
34 pages, including 7 tables and 7 figures, Accepted by ApJ
References in corpus (1)
Cited by in corpus (46)
- Supernova remnants: the X-ray perspective
- Discriminating the Progenitor Type of Supernova Remnants with Iron K-Shell Emission
- Are the Models for Type Ia Supernova Progenitors Consistent with the Properties of Supernova Remnants?
- Using the X-ray Morphologies of Young Supernova Remnants to Constrain Explosion Type, Ejecta Distribution, and Chemical Mixing
- A Deep Chandra Observation of Kepler's Supernova Remnant: A Type Ia Event with Circumstellar Interaction
- The population of X-ray supernova remnants in the Large Magellanic Cloud
- Thermal X-ray emission from shocked ejecta in Type Ia Supernova Remnants. Prospects for explosion mechanism identification
- The Stellar Ancestry of Supernovae in the Magellanic Clouds - I. the Most Recent Supernovae in the Large Magellanic Cloud
- Typing Supernova Remnants Using X-ray Line Emission Morphologies
- 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
- The influence of supernova remnants on the interstellar medium in the Large Magellanic Cloud seen at 20--600 m wavelengths
- Characteristics of Diffuse X-Ray Line Emission within 20 pc of the Galactic Center
- Thermal X-Ray Emission from Shocked Ejecta in Type Ia Supernova Remnants II: Parameters Affecting the Spectrum
- Dense, Fe-rich Ejecta in Supernova Remnants DEM L238 and DEM L249: A New Class of Type Ia Supernova?
- The kinematics and chemical stratification of the Type Ia supernova remnant 0519-69.0
- Observational evidence for high neutronization in supernova remnants: implications for Type Ia supernova progenitors
- Can Ejecta-Dominated Supernova Remnants be Typed from their X-ray Spectra? The Case of G337.2-0.7
- A survey of infrared supernova remnants in the Large Magellanic Cloud
- Supernova Remnants in the Magellanic Clouds. VI. The DEML316 Supernova Remnants
- Elemental Abundances in the Possible Type Ia Supernova Remnant G344.7-0.1
- Four new X-ray-selected supernova remnants in the Large Magellanic Cloud
- Spitzer Observations of the Type Ia Supernova Remnant N103B: Kepler's Older Cousin?
- Molecular Clouds associated with the Type Ia SNR N103B in the Large Magellanic Cloud
- X-Ray Studies of Supernova Remnants: A Different View of Supernova Explosions
- Multi-frequency study of a new Fe-rich supernova remnant in the Large Magellanic Cloud, MCSNR J0508-6902
- Search for Surviving Companions of Progenitors of Young LMC Type Ia Supernova Remnants
- Cr-K Emission Line as a Constraint on the Progenitor Properties of Supernova Remnants
- Physical Structures of the Type Ia Supernova Remnant N103B
- Integral Field Spectroscopy of Balmer-Dominated Shocks in the Magellanic Cloud Supernova Remnant N103B
- Constraining Explosion Type of Young Supernova Remnants Using 24 Micron Emission Morphology
- Dust Cooling in Supernova Remnants in the Large Magellanic Cloud
- Chandrasekhar and sub-Chandrasekhar models for the X-ray emission of Type Ia supernova remnants (I): Bulk properties
- The Expansion of the Young Supernova Remnant 0509-68.7 (N103B)
- Discovery of Double-Ring Structure in the Supernova Remnant N103B: Evidence for Bipolar Winds from a Type Ia Supernova Progenitor
- Investigation of the Progenitors of the Type Ia Supernovae Associated With the LMC Supernova Remnants 0505-67.9 and 0509-68.7
- Suzaku study on the Ejecta of the Supernova Remnant G272.23.2
- Radio Emission from Interstellar Shocks: Young Type Ia Supernova Remnants and the Case of N 103B in the Large Magellanic Cloud
- Progenitor Type Identification for Supernova Remnant N103B in the Large Magellanic Cloud by Suzaku and Chandra Observations
- Kinematics of Supernova Remnants: Status of X-Ray Observations
- A Systematic Study of Evolved Supernova Remnants in the Large and Small Magellanic Clouds with Suzaku
- Imagery and UV Spectroscopy of the LMC Supernova Remnant N103B Using HST
- Locating the CSM Emission within the Type Ia Supernova Remnant N103B
- Searching for Balmer-dominated Type Ia Supernova Remnants in M33
- Six Years of Chandra Observations of Supernova Remnants
- Linking the properties of accreting white dwarfs with the ionization state of their ambient medium
- Thermal X-ray Spectra of Supernova Remnants