Exploding Core-Collapse Supernovae with Jittering Jets
arXiv:1103.1554 · doi:10.1111/j.1365-2966.2011.18671.x
Abstract
We argue that jittering jets, i.e., jets that have their launching direction rapidly change, launched by the newly formed neutron star in a core collapse supernova can explode the star. We show that under a wide range of parameters the fast narrow jets deposit their energy inside the star via shock waves, and form two hot bubbles, that eventually merge, accelerate the rest of the star and lead to the explosion. To prevent the jets from penetrating through the collapsing stellar core and escape with their energy, instead of forming the hot bubbles, the jets should be prevented from drilling a hole through the star. This condition can be met if the jets' axis rapidly changes its direction. This process of depositing jets' energy into the ambient medium is termed the it penetrating jet feedback mechanism. The feedback exists in that the neutron star (or a black hole) at the center of the core collapse supernova shuts off its own growth by exploding the star. The jets deposit their energy at a distance of 1000 km from the center and expel the mass above that radius. In our model, the material near the stalled shock at several hundreds kilometers from the center is not expelled, but it is rather accreted and feed the accretion disk that blows the jets. The neutrinos might influence the accretion flow, but in the proposed model their role in exploding the star is small.
Accepted for publication in MNRAS
References in corpus (8)
- Which jet launching mechanism(s) in TTauri stars?
- Pulsar spins from an instability in the accretion shock of supernovae
- A non-spherical core in the explosion of supernova SN 2004dj
- The Proto-neutron Star Phase of the Collapsar Model and the Route to Long-soft Gamma-ray Bursts and Hypernovae
- Interaction of Jets with the ISM of Radio Galaxies
- Inflating Fat Bubbles in Clusters of Galaxies by Precessing Massive Slow Jets
- Three Dimensional Magnetohydrodynamical Simulations of Core Collapse Supernova
- The Formation of Slow-Massive-Wide Jets
Cited by in corpus (64)
- Physics of Core-Collapse Supernovae in Three Dimensions: a Sneak Preview
- The Observer's Guide to the Gamma-Ray Burst-Supernova Connection
- Self-consistent 3D Supernova Models From -7 Minutes to +7 Seconds: a 1-bethe Explosion of a ~19 Solar-mass Progenitor
- Natal Kicks of Stellar-Mass Black Holes by Asymmetric Mass Ejection in Fallback Supernovae
- The jet feedback mechanism (jfm) in stars, galaxies and clusters
- Unifying the Zoo of Jet-Driven Stellar Explosions
- Black Hole Accretion Discs and Luminous Transients in Failed Supernovae from Non-Rotating Supergiants
- Magnetorotational core collapse of possible GRB progenitors. III. Three-dimensional models
- The Hydrodynamic Origin of Neutron Star Kicks
- Explaining the most energetic supernovae with an inefficient jet-feedback mechanism
- Diversity of common envelope jets supernovae and the fast transient AT2018cow
- Explaining iPTF14hls as a common envelope jets supernova
- Triggering jet-driven explosions of core-collapse supernovae by accretion from convective regions
- Magnetar-powered superluminous supernovae must first be exploded by jets
- Core collapse supernova remnants with ears
- A Planar Jitternig-Jets Pattern in Core-Collapse Supernova Explosions
- A call for a paradigm shift from neutrino-driven to jet-driven core-collapse supernova mechanisms
- The supernova/gamma-ray burst/jet connection
- Angular momentum fluctuations in the convective helium shell of massive stars
- The imprints of the last jets in core collapse supernovae
- The role of jets in exploding supernovae and in shaping their remnants
- Operation of the jet feedback mechanism (JFM) in intermediate luminosity optical transients (ILOTs)
- Jets launched at magnetar birth cannot be ignored
- Exploding Core-Collapse Supernovae by Jets-Driven Feedback Mechanism
- Numerical simulations of the random angular momentum in convection II: delayed explosions of red supergiants following "failed'' supernovae
- Supplying angular momentum to the jittering jets explosion mechanism using inner convection layers
- Jets in Common Envelopes: a low mass main sequence star in a red giant
- What planetary nebulae can tell us about jets in core collapse supernovae
- Magnetar-Powered Supernovae in Two Dimensions. II. Broad-Line Supernovae Ic
- Reviving the stalled shock by jittering jets in core collapse supernovae: jets from the standing accretion shock instability
- Neutron star natal kick and jets in core collapse supernovae
- Explodability criteria for the neutrino-driven supernova mechanism
- The large landscape of supernova, GRB and cocoon interactions
- The two promising scenarios to explode core collapse supernovae
- Imprints of the jittering jets explosion mechanism in the morphology of the supernova remnant SNR 0540-69.3
- Emission peaks in the light curve of core collapse supernovae by late jets
- Remnant masses of core collapse supernovae in the jittering jets explosion mechanism
- Constraining the Fraction of Core-Collapse Supernovae Harboring Choked Jets with High-energy Neutrinos
- Boosting jittering jets by neutrino heating in core collapse supernovae
- The implications of large binding energies of massive stripped core collapse supernova progenitors on the explosion mechanism
- Multiple Peaks and a Long Precursor in the Type IIn Supernova 2021qqp: An Energetic Explosion in a Complex Circumstellar Environment
- Amplifying magnetic fields of a newly born neutron star by stochastic angular momentum accretion in core collapse supernovae
- Pre-explosion dynamo in the cores of massive stars
- Nucleosynthesis of r-Process Elements by Jittering Jets in Core-Collapse Supernovae
- Jet-shaped geometrically modified light curves of core collapse supernovae
- The jittering jets explosion mechanism (JJEM) in electron capture supernovae
- SN 2014C: VLBI image shows a shell structure and decelerated expansion
- The Extremely Metal-Poor SN 2023ufx: A Local Analog to High-Redshift Type II Supernovae
- Simulating the inflation of bubbles by late jets in core collapse supernova ejecta
- Low energy core collapse supernovae in the frame of the jittering jets explosion mechanism
- Storing magnetic fields in pre-collapse cores of massive stars
- Feeding post core collapse supernova explosion jets with an inflated main sequence companion
- Modelling light curves of bipolar core collapse supernovae from the equatorial plane
- Implications of post-kick jets in core collapse supernovae
- Post-explosion positive jet-feedback activity in inner ejecta of core collapse supernovae
- Pre-explosion, explosion, and post-explosion jets in supernova SN 2019zrk
- A mixed helium-oxygen shell in some core-collapse supernova progenitors
- Possible post-kick jets in SN 1987A
- The rotational shear in pre-collapse cores of massive stars
- Fast Transients from Magnetic Disks Around Non-Spinning Collapsar Black Holes
- Numerical Simulations of the Random Angular Momentum in Convection: Implications for Supergiant Collapse to Form Black Holes
- Exploding SNe with jets: time-scales
- Observational signatures of stellar explosions driven by relativistic jets
- Black hole to photosphere: 3D GRMHD simulations of collapsars reveal wobbling and hybrid composition jets