Composition of the Innermost Core Collapse Supernova Ejecta
arXiv:astro-ph/0410208 · doi:10.1086/498224
Abstract
With presently known input physics and computer simulations in 1D, a self-consistent treatment of core collapse supernovae does not yet lead to successful explosions, while 2D models show some promise. Thus, there are strong indications that the delayed neutrino mechanism works combined with a multi-D convection treatment for unstable layers. On the other hand there is a need to provide correct nucleosynthesis abundances for the progressing field of galactic evolution and observations of low metallicity stars. The innermost ejecta is directly affected by the explosion mechanism, i.e. most strongly the yields of Fe-group nuclei for which an induced piston or thermal bomb treatment will not provide the correct yields because the effect of neutrino interactions is not included. We apply parameterized variations to the neutrino scattering cross sections and alternatively, parameterized variations are applied to the neutrino absorption cross sections on nucleons in the ``gain region''. We find that both measures lead to similar results, causing explosions and a Ye>0.5 in the innermost ejected layers, due to the combined effect of a short weak interaction time scale and a negligible electron degeneracy, unveiling the proton-neutron mass difference. We include all weak interactions (electron and positron capture, beta-decay, neutrino and antineutrino capture on nuclei, and neutrino and antineutrino capture on nucleons) and present first nucleosynthesis results for these innermost ejected layers to discuss how they improve predictions for Fe-group nuclei. The proton-rich environment results in enhanced abundances of 45Sc, 49Ti, and 64Zn as requested by chemical evolution studies and observations of low metallicity stars as well as appreciable production of nuclei in the mass range up to A=80.
13 pages, 8 figures. Final version
References in corpus (4)
Cited by in corpus (121)
- Equations of state for supernovae and compact stars
- Theory of Core-Collapse Supernovae
- Nucleosynthesis Yields of Core-Collapse Supernovae and Hypernovae, and Galactic Chemical Evolution
- Origin of the Heaviest Elements: the Rapid Neutron-Capture Process
- Neutrino-induced nucleosynthesis of A>64 nuclei: The nu p-process
- Explosions of O-Ne-Mg Cores, the Crab Supernova, and Subluminous Type II-P Supernovae
- Protoneutron star evolution and the neutrino driven wind in general relativistic neutrino radiation hydrodynamics simulations
- Quantifying the uncertainties of chemical evolution studies. II. Stellar yields
- A New Mechanism for Core-Collapse Supernova Explosions
- Supernova Nucleosynthesis in Population III 13 -- 50 Stars and Abundance Patterns of Extremely Metal-Poor Stars
- A New Multi-Dimensional General Relativistic Neutrino Hydrodynamics Code for Core-Collapse Supernovae II. Relativistic Explosion Models of Core-Collapse Supernovae
- Nucleosynthesis in Early Supernova Winds II: The Role of Neutrinos
- Nucleosynthesis-relevant conditions in neutrino-driven supernova outflows. I. Spherically symmetric hydrodynamic simulations
- NuGrid stellar data set I. Stellar yields from H to Bi for stars with metallicities Z = 0.02 and Z = 0.01
- Charged-Particle and Neutron-Capture Processes in the High-Entropy Wind of Core-Collapse Supernovae
- Production of Light Element Primary Process nuclei in neutrino-driven winds
- The rp-Process in Neutrino-driven Winds
- Galactic evolution of rapid neutron capture process abundances: the inhomogeneous approach
- Nucleosynthesis in Electron Capture Supernovae of AGB Stars
- Type Ia Supernovae as Sites of p-process: Two-Dimensional Models Coupled to Nucleosynthesis
- Nucleosynthesis in the Outflow from Gamma Ray Burst Accretion Disks
- Features of the Acoustic Mechanism of Core-Collapse Supernova Explosions
- Neutrino-driven wind simulations and nucleosynthesis of heavy elements
- Abundance Profiling of Extremely Metal-Poor Stars and Supernova Properties in the Early Universe
- Dynamical r-process studies within the neutrino-driven wind scenario and its sensitivity to the nuclear physics input
- Uncertainties in the nu p-process: supernova dynamics versus nuclear physics
- Trends in Ti44 and Ni56 from Core-Collapse Supernovae
- The Connection between Gamma-Ray Bursts and Extremely Metal-Poor Stars: Black Hole-forming Supernovae with Relativistic Jets
- Aspherical Properties of Hydrodynamics and Nucleosynthesis in Jet-induced Supernovae
- PUSHing Core-Collapse Supernovae to Explosions in Spherical Symmetry III: Nucleosynthesis Yields
- Pushing 1D CCSNe to explosions: model and SN 1987A
- Neutrino spectra evolution during proto-neutron star deleptonization
- Iron-Group Abundances in the Metal-Poor Main Sequence Turnoff Star HD~84937
- Influence of light nuclei on neutrino-driven supernova outflows
- The importance of nuclear masses in the astrophysical rp-process
- PUSHing Core-Collapse Supernovae to Explosions in Spherical Symmetry II: Explodability and Global Properties
- Neutrino-nucleus reactions and their role for supernova dynamics and nucleosynthesis
- High-precision abundances of Sc, Mn, Cu, and Ba in solar twins. Trends of element ratios with stellar age
- The r-process in the neutrino-driven wind from a black-hole torus
- Nuclear-Astrophysics Lessons from INTEGRAL
- Magnetorotational supernovae: A nucleosynthetic analysis of sophisticated 3D models
- Evidence for an aspherical Population III supernova explosion inferred from the hyper metal-poor star HE1327-2326
- Potential Impact of Fast Flavor Oscillations on Neutrino-driven Winds and Their Nucleosynthesis
- Supernova neutrinos and nucleosynthesis
- Neutrinos from Fallback onto Newly Formed Neutron Stars
- Convective-reactive nucleosynthesis of K, Sc, Cl and p-process isotopes in O-C shell mergers
- Chemical Enrichment in the Carbon-enhanced Damped Lyman System
- Implications for Post-Processing Nucleosynthesis of Core-Collapse Supernova Models with Lagrangian Particles
- Role of core-collapse supernovae in explaining Solar System abundances of p nuclides
- Constraining properties of the next nearby core-collapse supernova with multi-messenger signals
- PUSHing core-collapse supernovae to explosions in spherical symmetry IV: Explodability, remnant properties and nucleosynthesis yields of low metallicity stars
- Spectroscopic Studies of Extremely Metal-Poor Stars with the Subaru High Dispersion Spectrograph. IV. The alpha-Element-Enhanced Metal-Poor Star BS16934-002
- Uncertainties in Supernova Yields I: 1D Explosions
- Alpha-resonance structure in C studied via resonant scattering of Be+ and Be(, ) reaction
- The Effect of Supernova Convection On Neutron Star and Black Hole Masses
- Production of the p-Process Nuclei in the Carbon-Deflagration Model for Type Ia Supernovae
- Impact of neutrino flavor oscillations on the neutrino-driven wind nucleosynthesis of an electron-capture supernova
- Viscous evolution of a massive disk surrounding stellar-mass black holes in full general relativity
- Parameterizing the Supernova Engine and its Effects on Remnants and Basic Yields
- Neutrinos and nucleosynthesis of elements
- Constraints on explosive silicon burning in core-collapse supernovae from measured Ni/Fe ratios
- Nucleosynthesis in 2D Core-Collapse Supernovae of 11.2 and 17.0 M Progenitors: Implications for Mo and Ru Production
- The role of supernova convection for the lower mass gap in the isolated binary formation of gravitational wave sources
- Mn abundances in the stars of the Galactic disc with metallicities -1.0 < [Fe/H] < 0.3
- Explosive Nucleosynthesis of Weak r-Process Elements in Extremely Metal-Poor Core-Collapse Supernovae
- On the origin of the lightest Molybdenum isotopes
- Uncertainties in p-process nucleosynthesis from Monte Carlo variation of reaction rates
- Co-production of light p-, s- and r-process isotopes in the high-entropy wind of type II supernovae
- Signatures of R-process Enrichment in Supernovae from Collapsars
- High-entropy ejections from magnetized proto-neutron star winds: implications for heavy element nucleosynthesis
- Challenges in nucleosynthesis of trans-iron elements
- Neutrino-heated winds from millisecond proto-magnetars as sources of the weak r-process
- Nucleon self-energies for supernova equations of state
- Nuclear Input for Core-collapse Models
- Nucleosynthesis of Nickel-56 from Gamma-Ray Burst Accretion Disks
- Using failed supernovae to constrain the Galactic r-process element production
- Constraining nucleosynthesis in neutrino-driven winds: observations, simulations and nuclear physics
- The Nucleosynthetic Yields of Core-Collapse Supernovae, prospects for the Next Generation of Gamma-Ray Astronomy
- Observing the metal-poor solar neighbourhood: a comparison of galactic chemical evolution predictions
- PUSHing core-collapse supernovae to explosions in spherical symmetry V: Equation of state dependency of explosion properties, nucleosynthesis yields, and compact remnants
- Explosive nucleosynthesis of ultra-stripped Type Ic supernovae: application to light trans-iron elements
- Nucleosynthesis of an Supernova with 3D Simulation of the Inner Ejecta: Overall Yields and Implications for Short-Lived Radionuclides in the Early Solar System
- The Role of the Hadron-Quark Phase Transition in Core-Collapse Supernovae
- Effect of collective neutrino flavor oscillations on vp-process nucleosynthesis
- Nucleosynthesis in Neutrino-Driven Supernovae
- Cr-K Emission Line as a Constraint on the Progenitor Properties of Supernova Remnants
- Massive Stars and their Supernovae
- nu-Process Nucleosynthesis in Population III Core-Collapse Supernovae
- Nucleosynthesis in core-collapse supernova explosions triggered by a quark-hadron phase transition
- Explosive nucleosynthesis in the neutrino-driven aspherical supernova explosion of a non-rotating 15 star with solar metallicity
- A Comparison of 2D Magnetohydrodynamic Supernova Simulations with the CoCoNuT-FMT and Aenus-Alcar Codes
- Post-explosion evolution of core-collapse supernovae
- Freeze-out yields of radioactivities in core-collapse supernovae
- Early chemical evolution of Zn driven by magnetorotational supernovae and the pathway to the solar Zn composition
- Nuclear Weak Rates and Nuclear Weak Processes in Stars
- Stellar evolution of massive stars at very low metallicities
- Tracer particles for core-collapse supernova nucleosynthesis: The advantages of moving backward
- Nuclear physics with spherically symmetric supernova models
- Systematic study of (p,γ) reactions on Ni isotopes
- Investigating the predicted breathing-mode excitation of the Hoyle state
- The Occurrence and Impact of Carbon-Oxygen Shell Mergers in Massive Stars
- Three-Dimensional General-Relativistic Simulations of Neutrino-Driven Winds from Rotating Proto-Neutron Stars
- Resonant Spin-Flavor Conversion of Supernova Neutrinos: Dependence on Electron Mole Fraction
- Black Hole Supernovae, their Equation of State Dependence and Ejecta Composition
- General properties of astrophysical reaction rates in explosive nucleosynthesis
- Photonuclear Reactions in Astrophysics
- Diverse, massive-star-associated sources for elements heavier than Fe and the roles of neutrinos
- Modelling the composition of a young star cluster ejecta
- Explosive Nucleosynthesis: What we learned and what we still do not understand
- Implementation and validation of realistic (n,x) reaction yields in GEANT4 utilizing a detailed evaluated nuclear reaction library below 20 MeV
- Assessing stellar yields in Galaxy chemical evolution: observational stellar abundance patterns
- XRISM Observations of Cassiopeia A: Overview, Atomic Data, and Spectral Models
- Two-proton capture on the Se nucleus with a new self-consistent cluster model
- Impact of Uncertainties in Astrophysical Reaction Rates on Nucleosynthesis in the Process
- On the character of turbulence in self-consistent models of core-collapse supernovae
- Chemical Evolution of Heavy Elements in the Early Galaxy: Implications for Stellar Sources
- Core-Collapse Supernovae: From Neutrino-Driven 1D Explosions to Light Curves and Spectra
- Spin light of relativistic electrons in neutrino fluxes
- Explosive nucleosynthesis in core-collapse supernovae
- The R-Process Alliance: A Nearly Complete R-Process Abundance Template Derived from Ultraviolet Spectroscopy of the R-Process-Enhanced Metal-Poor Star HD 222925
- Uncertainties in the production of iron-group nuclides in core-collapse supernovae from Monte Carlo variations of reaction rates