A Deep Chandra Observation of Kepler's Supernova Remnant: A Type Ia Event with Circumstellar Interaction
arXiv:0708.3858 · doi:10.1086/522830
Abstract
We present initial results of a 750 ks Chandra observation of the remnant of Kepler's supernova of AD 1604. The strength and prominence of iron emission, together with the absence of O-rich ejecta, demonstrate that Kepler resulted from a thermonuclear supernova, even though evidence for circumstellar interaction is also strong. We have analyzed spectra of over 100 small regions, and find that they fall into three classes. (1) The vast majority show Fe L emission between 0.7 and 1 keV and Si and S K alpha emission; we associate these with shocked ejecta. A few of these are found at or beyond the mean blast wave radius. (2) A very few regions show solar O/Fe abundance rations; these we associate with shocked circumstellar medium (CSM). Otherwise O is scarce. (3) A few regions are dominated by continuum, probably synchrotron radiation. Finally, we find no central point source, with a limit about 100 times fainter than the central object in Cas A. The evidence that the blast wave is interacting with CSM may indicate a Ia explosion in a more massive progenitor.
Accepted by ApJ Letters
References in corpus (1)
Cited by in corpus (8)
- The Stellar Ancestry of Supernovae in the Magellanic Clouds - I. the Most Recent Supernovae in the Large Magellanic Cloud
- The Kinematics of Kepler's Supernova Remnant as revealed by Chandra
- Companion Stars of Type Ia Supernovae
- On the fraction of intermediate-mass close binaries that explode as type-Ia supernovae
- A Search for the Progenitors of Two Type-Ia Supernovae in NGC 1316
- Forward Shock Proper Motions of Kepler's Supernova Remnant
- CANGAROO-III Search for Gamma Rays from Kepler's Supernova Remnant
- Supernova remnants, planetary nebulae and superbubbles: prospects for new XMM-Newton observations