THE MORPHOLOGY AND DYNAMICS OF JET-DRIVEN SUPERNOVA REMNANTS: THE CASE OF W49B

The circumstellar medium (CSM) of a massive star is modified by its winds before a supernova (SN) explosion occurs, and thus the evolution of the resulting supernova remnant (SNR) is influenced by both the geometry of the explosion as well as the complex structure of the CSM. Motivated by recent wor...

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Bibliographic Details
Main Authors: González-Casanova, Diego F. (Author), De Colle, Fabio (Author), Ramirez-Ruiz, Enrico (Author), Lopez, Laura A. (Contributor)
Other Authors: Massachusetts Institute of Technology. Department of Physics (Contributor), MIT Kavli Institute for Astrophysics and Space Research (Contributor)
Format: Article
Language:English
Published: IOP Publishing, 2015-01-29T17:34:56Z.
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Online Access:Get fulltext
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042 |a dc 
100 1 0 |a González-Casanova, Diego F.  |e author 
100 1 0 |a Massachusetts Institute of Technology. Department of Physics  |e contributor 
100 1 0 |a MIT Kavli Institute for Astrophysics and Space Research  |e contributor 
100 1 0 |a Lopez, Laura A.  |e contributor 
700 1 0 |a De Colle, Fabio  |e author 
700 1 0 |a Ramirez-Ruiz, Enrico  |e author 
700 1 0 |a Lopez, Laura A.  |e author 
245 0 0 |a THE MORPHOLOGY AND DYNAMICS OF JET-DRIVEN SUPERNOVA REMNANTS: THE CASE OF W49B 
260 |b IOP Publishing,   |c 2015-01-29T17:34:56Z. 
856 |z Get fulltext  |u http://hdl.handle.net/1721.1/93196 
520 |a The circumstellar medium (CSM) of a massive star is modified by its winds before a supernova (SN) explosion occurs, and thus the evolution of the resulting supernova remnant (SNR) is influenced by both the geometry of the explosion as well as the complex structure of the CSM. Motivated by recent work suggesting the SNR W49B was a jet-driven SN expanding in a complex CSM, we explore how the dynamics and the metal distributions in a jet-driven explosion are modified by the interaction with the surrounding environment. In particular, we perform hydrodynamical calculations to study the dynamics and explosive nucleosynthesis of a jet-driven SN triggered by the collapse of a 25 M[subscript ☉] Wolf-Rayet star and its subsequent interaction with the CSM up to several hundred years following the explosion. We find that although the CSM has small-scale effects on the structure of the SNR, the overall morphology and abundance patterns are reflective of the initial asymmetry of the SN explosion. Thus, we predict that jet-driven SNRs, such as W49B, should be identifiable based on morphology and abundance patterns at ages up to several hundred years, even if they expand into a complex CSM environment. 
520 |a David & Lucile Packard Foundation 
520 |a National Science Foundation (U.S.) (Grant AST-0847563) 
520 |a DGAPA-PAPIIT-UNAM (Grant IA101413-2) 
520 |a United States. National Aeronautics and Space Administration. Einstein Postdoctoral Fellowship Award 
520 |a MIT Department of Physics Pappalardo Program 
546 |a en_US 
655 7 |a Article 
773 |t Astrophysical Journal. Letters