The velocity distribution of outflows driven by choked jets in stellar envelopes
arXiv:2208.14459 · doi:10.1093/mnras/stac3640
Abstract
Many stripped envelope supernovae (SNe) present a signature of high-velocity material responsible for broad absorption lines in the observed spectrum. These include SNe that are associated with long gamma-ray bursts (LGRBs) and low-luminosity GRBs (llGRBs), and SNe that are not associated with GRBs. Recently it was suggested that this high velocity material originates from a cocoon that is driven by a relativistic jet. In LGRBs this jet breaks out successfully from the stellar envelope, while in llGRBs and SNe that are not associated with GRBs the jet is choked. Here we use numerical simulations to explore the velocity distribution of an outflow that is driven by a choked jet and its dependence on the jet and progenitor properties. We find that in all cases where the jet is not choked too deep within the star, the outflow carries a roughly constant amount of energy per logarithmic scale of proper velocity over a wide range of velocities, which depends mostly on the cocoon volume at the time of its breakout. This is a universal property of jets driven outflows, which does not exist in outflows of spherically symmetric explosions or when the jets are choked very deep within the star. We therefore conclude that jets that are choked (not too deep) provide a natural explanation to the fast material seen in the early spectra of stripped envelope SNe that are not associated with LGRBs and that properties of this material could reveal information on the otherwise hidden jets.
14 pages, 15 figures, accepted for publication on MNRAS
References in corpus (14)
- PLUTO: a Numerical Code for Computational Astrophysics
- Theory of Core-Collapse Supernovae
- Three-Dimensional Simulations of Core-Collapse Supernovae: From Shock Revival to Shock Breakout
- The metamorphosis of Supernova SN2008D/XRF080109: a link between Supernovae and GRBs/Hypernovae
- Early-Time Photometry and Spectroscopy of the Fast Evolving SN 2006AJ Associated with GRB 060218
- The Observable Signatures of GRB Cocoons
- Very high efficiency photospheric emission in long duration gamma-ray bursts
- A unified picture for low-luminosity and long gamma-ray bursts based on the extended progenitor of llgrb 060218/SN 2006aj
- Signatures of a jet cocoon in early spectra of a supernova associated with a -ray burst
- Angular Energy Distribution of Collapsar-Jets
- Relativistic Hydrodynamic Flows Using Spatial and Temporal Adaptive Structured Mesh Refinement
- Collimated Jet or Expanding Outflow: Possible Origins of GRBs and X-Ray Flashes
- Nonthermal gamma-ray and X-ray flashes from shock breakout in gamma-ray bursts/supernovae
- Bolometric light curves of aspherical shock breakout
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