The Progenitor Dependence of Three-Dimensional Core-Collapse Supernovae
arXiv:1712.01304 · doi:10.3847/2041-8213/aaa967
Abstract
We present a first study of the progenitor star dependence of the three-dimensional (3D) neutrino mechanism of core-collapse supernovae. We employ full 3D general-relativistic multi-group neutrino radiation-hydrodynamics and simulate the post-bounce evolutions of progenitors with zero-age main sequence masses of , , , , and . All progenitors, with the exception of the star, experience shock runaway by the end of their simulations. In most cases, a strongly asymmetric explosion will result. We find three qualitatively distinct evolutions that suggest a complex dependence of explosion dynamics on progenitor density structure, neutrino heating, and 3D flow. (1) Progenitors with massive cores, shallow density profiles, and high post-core-bounce accretion rates experience very strong neutrino heating and neutrino-driven turbulent convection, leading to early shock runaway. Accretion continues at a high rate, likely leading to black hole formation. (2) Intermediate progenitors experience neutrino-driven, turbulence-aided explosions triggered by the arrival of density discontinuities at the shock. These occur typically at the silicon/silicon-oxygen shell boundary. (3) Progenitors with small cores and density profiles without strong discontinuities experience shock recession and develop the 3D standing-accretion shock instability (SASI). Shock runaway ensues late, once declining accretion rate, SASI, and neutrino-driven convection create favorable conditions. These differences in explosion times and dynamics result in a non-monotonic relationship between progenitor and compact remnant mass.
8 pages, 6 figures, submitted
References in corpus (12)
- Theory of Core-Collapse Supernovae
- Nucleosynthesis and Remnants in Massive Stars of Solar Metallicity
- Three-dimensional core-collapse supernova simulated using a 15 progenitor
- Truncated Moment Formalism for Radiation Hydrodynamics in Numerical Relativity
- The Role of Turbulence in Neutrino-Driven Core-Collapse Supernova Explosions
- Neutrino-driven supernova of a low-mass iron-core progenitor boosted by three-dimensional turbulent convection
- Multidimensional supernova simulations with approximative neutrino transport. II. Convection and the advective-acoustic cycle in the supernova core
- The Progenitor Dependence of the Preexplosion Neutrino Emission in Core-Collapse Supernovae
- Neutrino emission characteristics and detection opportunities based on three-dimensional supernova simulations
- Rotation-supported Neutrino-driven Supernova Explosions in Three Dimensions and the Critical Luminosity Condition
- Black hole formation and fallback during the supernova explosion of a star
- A Detailed Comparison of Multi-Dimensional Boltzmann Neutrino Transport Methods in Core-Collapse Supernovae
Cited by in corpus (100)
- Exploring Fundamentally Three-dimensional Phenomena in High-fidelity Simulations of Core-collapse Supernovae
- Three-Dimensional Simulations of Neutrino-Driven Core-Collapse Supernovae from Low-Mass Single and Binary Star Progenitors
- Pulsational pair-instability supernovae in very close binaries
- Characterizing the Gravitational Wave Signal from Core-Collapse Supernovae
- Hydrodynamics of core-collapse supernovae and their progenitors
- Self-consistent 3D Supernova Models From -7 Minutes to +7 Seconds: a 1-bethe Explosion of a ~19 Solar-mass Progenitor
- A Successful 3D Core-Collapse Supernova Explosion Model
- Different to the core: the pre-supernova structures of massive single and binary-stripped stars
- Three-Dimensional Supernova Explosion Simulations of 9-, 10-, 11-, 12-, and 13-M Stars
- Three-dimensional Models of Core-collapse Supernovae From Low-mass Progenitors With Implications for Crab
- Three-dimensional core-collapse supernova simulations of massive and rotating progenitors
- Simple recipes for compact remnant masses and natal kicks
- Magnetorotational Explosion of A Massive Star Supported by Neutrino Heating in General Relativistic Three Dimensional Simulations
- Temporal and Angular Variations of 3D Core-Collapse Supernova Emissions and their Physical Correlations
- Simulating Turbulence-aided Neutrino-driven Core-collapse Supernova Explosions in One Dimension
- Gravitational-wave signal of a core-collapse supernova explosion of a 15 Solar mass star
- Hydrodynamical Neutron-star Kicks in Electron-capture Supernovae and Implications for the CRAB Supernova
- A full general relativistic neutrino radiation-hydrodynamics simulation of a collapsing very massive star and the formation of a black hole
- Fast-pairwise collective neutrino oscillations associated with asymmetric neutrino emissions in core-collapse supernova
- Revival of the Fittest: Exploding Core-Collapse Supernovae from 12 to 25 M
- Three-Dimensional Core-Collapse Supernova Simulations with Multi-Dimensional Neutrino Transport Compared to the Ray-by-Ray-plus Approximation
- A systematic study of proto-neutron star convection in three-dimensional core-collapse supernova simulations
- Predictions for the hydrogen-free ejecta of pulsational pair-instability supernovae
- Sensitivity of the lower-edge of the pair instability black hole mass gap to the treatment of time dependent convection
- PUSHing Core-Collapse Supernovae to Explosions in Spherical Symmetry II: Explodability and Global Properties
- Equation of state effects in the core collapse of a - star
- Multi-D Simulations of Ultra-Stripped Supernovae to Shock Breakout
- The APR equation of state for simulations of supernovae, neutron stars and binary mergers
- Stellar Collapse Diversity and the Diffuse Supernova Neutrino Background
- Neutrino emission characteristics of black hole formation in three-dimensional simulations of stellar collapse
- The Collapse and Three-Dimensional Explosion of Three-Dimensional, vis à vis One-Dimensional, Massive-star Supernova Progenitor Models
- Exciting Prospects for Detecting Late-Time Neutrinos from Core-Collapse Supernovae
- Gravitational Waves from Neutrino Asymmetries in Core-Collapse Supernovae
- Constraining properties of the next nearby core-collapse supernova with multi-messenger signals
- Equation of State and Progenitor Dependence of Stellar-Mass Black-Hole Formation
- Chimera: A massively parallel code for core-collapse supernova simulation
- The Essential Character of the Neutrino Mechanism of Core-Collapse Supernova Explosions
- Stellar Mass Black Hole Formation and Multi-messenger Signals from Three Dimensional Rotating Core-Collapse Supernova Simulations
- Characteristic Time Variability of Gravitational-Wave and Neutrino Signals from Three-dimensional Simulations of Non-Rotating and Rapidly Rotating Stellar Core-Collapse
- The final core collapse of pulsational pair instability supernovae
- Pulsational pair-instability supernovae: gravitational collapse, black-hole formation, and beyond
- Binary-Stripped Stars as Core-Collapse Supernovae Progenitors
- Long-term Simulations of Multi-Dimensional Core-collapse Supernovae: Implications for Neutron Star Kicks
- The infancy of core-collapse supernova remnants
- Three-dimensional simulation of a core-collapse supernova for a binary star progenitor of SN 1987A
- Pre-supernova evolution and final fate of stellar mergers and accretors of binary mass transfer
- Supernova neutrino signals based on long-term axisymmetric simulations
- Revisiting the explodability of single massive star progenitors of stripped-envelope supernovae
- Interplay Between Neutrino Kicks and Hydrodynamic Kicks of Neutron Stars and Black Holes
- It's written in the massive stars: The role of stellar physics in the formation of black holes
- Magnetic support for neutrino-driven explosion of 3D non-rotating core-collapse supernova models
- The Impact of Different Neutrino Transport Methods on Multidimensional Core-collapse Supernova Simulations
- Progenitor Mass Distribution of Core-Collapse Supernova Remnants in Our Galaxy and Magellanic Clouds based on Elemental Abundances
- Universality of the Neutrino Collisional Flavor Instability in Core Collapse Supernovae
- Resolution Study for Three-dimensional Supernova Simulations with the Prometheus-Vertex Code
- The role of core-collapse physics in the observability of black-hole neutron-star mergers as multi-messenger sources
- The Boltzmann-radiation-hydrodynamics Simulations of Core-collapse Supernovae with Different Equations of State: the Role of Nuclear Composition and the Behavior of Neutrinos
- Effects of the standing accretion-shock instability and the lepton-emission self-sustained asymmetry in the neutrino emission of rotating supernovae
- Low-luminosity type IIP supernovae: SN 2005cs and SN 2020cxd as very low-energy iron core-collapse explosions
- Gravitational-wave Signals From Three-dimensional Supernova Simulations With Different Neutrino-Transport Methods
- Identifying rotation in SASI-dominated core-collapse supernovae with a neutrino gyroscope
- The Role of the Hadron-Quark Phase Transition in Core-Collapse Supernovae
- Applications of Machine Learning to Predicting Core-collapse Supernova Explosion Outcomes
- Two-dimensional numerical study for magnetic field dependence of neutrino-driven core-collapse supernova models
- Convection-Aided Explosions in One-Dimensional Core-Collapse Supernova Simulations I: Technique and Validation
- A 3D Simulation of a Type II-P Supernova: from Core Bounce to Beyond Shock Breakout
- Impact of magnetic field on neutrino-matter interactions in core-collapse supernova
- A Comparison of Explosion Energies for Simulated and Observed Core-Collapse Supernovae
- Monotonicity of the cores of massive stars
- Wave heating from proto-neutron star convection and the core-collapse supernova explosion mechanism
- Spontaneous Scalarization as a New Core-Collapse Supernova Mechanism and its Multi-Messenger Signals
- Neutrino flavor mixing with moments
- Shock Revival in Core-collapse Supernovae Assisted by Heavy Axion-like Particles
- The impact of progenitor asymmetries on the neutrino-driven convection in core-collapse supernovae
- Modelling supernova nebular lines in 3D with
- Comparison of the Core-Collapse Evolution of Two Nearly Equal Mass Progenitors
- Neutrino transport with Monte Carlo method: I. Towards fully consistent implementation of nucleon recoils in core-collapse supernova simulations
- Exploring Supernova Gravitational Waves with Machine Learning
- The chemical evolution of the solar neighbourhood for planet-hosting stars
- Non-thermal neutrinos created by shock acceleration in successful and failed core-collapse supernova
- Accretion in a dynamical spacetime and spinning up of the black hole in the gamma ray burst central engine
- The Antesonic Condition for the Explosion of Core-Collapse Supernovae I: Spherically Symmetric Polytropic Models: Stability & Wind Emergence
- Neutrino Echos following Black Hole Formation in Core-Collapse Supernovae
- A Generalized Kompaneets Formalism for Inelastic Neutrino-Nucleon Scattering in Supernova Simulations
- The Demographics of Binary Companions to Stripped-Envelope Supernovae: Confronting Observations with Population Synthesis
- Diffuse supernova neutrino background with up-to-date star formation rate measurements and long-term multidimensional supernova simulations
- Muon-induced collisional flavor instability in core-collapse supernova
- Neutrino-driven Core-collapse Supernova Yields in Galactic Chemical Evolution
- Light Curves of Type IIP Supernovae from Neutrino-driven Explosions of Red Supergiants Obtained by a Semi-analytic Approach
- Accretion induced black hole spin up revised by numerical GR MHD simulations
- Chromium Nucleosynthesis and Silicon-Carbon Shell Mergers in Massive Stars
- Spatiotemporal linear instability analysis of collective neutrino flavor conversion in 4-dimensional spacetime
- First Detailed Calculation of Atmospheric Neutrino Foregrounds to the Diffuse Supernova Neutrino Background in Super-Kamiokande
- Parallelized Solution Method of the Three-dimensional Gravitational Potential on the Yin-Yang Grid
- Constraints on Explosion Timescale of Core-Collapse Supernovae Based on Systematic Analysis of Light Curves
- Neutron star oscillations in pseudo-Newtonian gravity
- A Brief History of the Co-evolution of Supernova Theory with Neutrino Physics
- Turbulence Generation by Shock-Acoustic-Wave Interaction in Core-Collapse Supernovae
- Where, when and why: occurrence of fast-pairwise collective neutrino oscillation in three-dimensional core-collapse supernova models
- Empirical correlation between masses of black holes and Wolf-Rayet stars derived from their mass distributions in spectroscopic binaries