The 2D Distribution of Iron Rich Ejecta in the Remnant of SN 1885 in M31
arXiv:1412.3815 · doi:10.1088/0004-637X/804/2/140
Abstract
We present Hubble Space Telescope (HST) ultraviolet Fe I and Fe II images of the remnant of Supernova 1885 (S And) which is observed in absorption against the bulge of the Andromeda galaxy, M31. We compare these Fe I and Fe II absorption line images to previous HST absorption images of S And, of which the highest quality and theoretically cleanest is Ca II H & K. Because the remnant is still in free expansion, these images provide a 2D look at the distribution of iron synthesized in this probable Type Ia explosion, thus providing insights and constraints for theoretical SN Ia models. The Fe I images show extended absorption offset to the east from the remnant's center as defined by Ca II images and is likely an ionization effect due to self-shielding. More significant is the remnant's apparent Fe II distribution which consists of four streams or plumes of Fe-rich material seen in absorption that extend from remnant center out to about 10,000 km/s. This is in contrast to the remnant's Ca II absorption, which is concentrated in a clumpy, roughly spherical shell at 1000 to 5000 km/s but which extends out to 12,500 km/s. The observed distributions of Ca and Fe rich ejecta in the SN 1885 remnant are consistent with delayed detonation white dwarf models. The largely spherical symmetry of the Ca-rich layer argues against a highly anisotropic explosion as might result from a violent merger of two white dwarfs.
14 pages, 8 figures, and 1 table; revised to match ApJ published version
References in corpus (5)
- Massive stars exploding in a He-rich circumstellar medium. I. Type Ibn (SN 2006jc-like) events
- Type Ia Supernovae as Stellar Endpoints and Cosmological Tools
- Detonating Failed Deflagration Model of Thermonuclear Supernovae I. Explosion Dynamics
- The Chemical Distribution in a Subluminous Type Ia Supernova: HST Images of the SN 1885 Remnant
- Thermonuclear Supernovae: Probing Magnetic Fields by Late-Time IR Line Profiles
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