Hypernovae and Other Black-Hole-Forming Supernovae
arXiv:astro-ph/0308136 · doi:10.1007/978-0-306-48599-2_10
Abstract
During the last few years, a number of exceptional core-collapse supernovae (SNe) have been discovered. Their kinetic energy of the explosions are larger by more than an order of magnitude than the typical values for this type of SNe, so that these SNe have been called `Hypernovae'. We first describe how the basic properties of hypernovae can be derived from observations and modeling. These hypernovae seem to come from rather massive stars, thus forming black holes. On the other hand, there are some examples of massive SNe with only a small kinetic energy. We suggest that stars with non-rotating black holes are likely to collapse "quietly" ejecting a small amount of heavy elements (Faint supernovae). In contrast, stars with rotating black holes are likely to give rise to very energetic supernovae (Hypernovae). We present distinct nucleosynthesis features of these two types of "black-hole-forming" supernovae. Hypernova nucleosynthesis is characterized by larger abundance ratios (Zn,Co,V,Ti)/Fe and smaller (Mn,Cr)/Fe. Nucleosynthesis in Faint supernovae is characterized by a large amount of fall-back. We show that the abundance pattern of the most Fe deficient star, HE0107-5240, and other extremely metal-poor carbon-rich stars are in good accord with those of black-hole-forming supernovae, but not pair-instability supernovae. This suggests that black-hole-forming supernovae made important contributions to the early Galactic (and cosmic) chemical evolution.
49 pages, to be published in "Stellar Collapse" (Astrophysics and Space Science; Kluwer) ed. C. L. Fryer (2003)
References in corpus (7)
- A stellar relic from the early Milky Way
- Observed and Physical Properties of Core-Collapse Supernovae
- First-generation black-hole-forming supernovae and the metal abundance pattern of a very iron-poor star
- A Two-Component Model for the Light Curves of Hypernovae
- Peculiar, Low Luminosity Type II Supernovae: Low Energy Explosions in Massive Progenitors?
- SN1999E: Another piece in the SN-GRB connection puzzle
- Early-Phase Spectra of "Hypernova" SN 2002ap
Cited by in corpus (41)
- The Supernova -- Gamma-Ray Burst Connection
- Galactic chemical evolution: Carbon through Zinc
- An enigmatic long-lasting gamma-ray burst not accompanied by a bright supernova
- Variations in the Abundance Pattern of Extremely Metal-poor Stars and Nucleosynthesis in Population III Supernovae
- Supernova Nucleosynthesis in Population III 13 -- 50 Stars and Abundance Patterns of Extremely Metal-Poor Stars
- The Rates of Hypernovae and Gamma-Ray Bursts: Implications for their Progenitors
- How much 56Ni can be produced in Core-Collapse Supernovae? : Evolution and Explosions of 30 - 100 Msun Stars
- Models for the Type Ic Hypernova SN 2003lw associated with GRB 031203
- Swift observations of GRB 060614: an anomalous burst with a well behaved afterglow
- The Connection between Gamma-Ray Bursts and Extremely Metal-Poor Stars: Black Hole-forming Supernovae with Relativistic Jets
- The Unique Type Ib Supernova 2005bf: A WN Star Explosion Model for Peculiar Light Curves and Spectra
- Molecular Superbubbles in the Starburst Galaxy NGC 253
- Principal Component Analysis on Chemical Abundances Spaces
- Optical Emission from Aspherical Supernovae and the Hypernova SN 1998bw
- On the Light Curve and Spectrum of SN 2003dh Separated from the Optical Afterglow of GRB 030329
- Magnetar-energized supernova explosions and GRB-jets
- PUSHing Core-Collapse Supernovae to Explosions in Spherical Symmetry II: Explodability and Global Properties
- Nebular Spectra of SN 1998bw Revisited: Detailed Study by One and Two Dimensional Models
- The peculiar type Ib supernova 2005bf: explosion of a massive He star with a thin hydrogen envelope?
- Explosive Nucleosynthesis from GRB and Hypernova Progenitors: Direct Collapse versus Fallback
- The Optical/Near-Infrared Light Curves of SN 2002ap for the First 1.5 Years after Discovery
- Deep GEMINI GMOS-IFU spectroscopy of BAL QSOs: I. Decoupling the BAL, QSO, starburst, NLR, supergiant bubbles and galactic wind in Mrk 231
- Binary population synthesis models for core-collapse gamma-ray burst progenitors
- Metal Mixing and Ejection in Dwarf Galaxies is Dependent on Nucleosynthetic Source
- The supernova/gamma-ray burst/jet connection
- Evolutive Unification in Composite Active Galactic Nuclei
- Empirical Abundance Scaling Laws and Implications for the Gamma-Process in Core-Collapse Supernovae
- Supernova light curve models for the bump in the Optical Counterpart of X-Ray Flash 030723
- Precursors and Main-bursts of Gamma Ray Bursts in a Hypernova Scenario
- Inhomogeneous enrichment of radioactive nuclei in the Galaxy: Deposition of live Mn-53, Fe-60, Hf-182, and Pu-244 into deep-sea archives. Surfing the wave?
- GEMINI 3D spectroscopy of BAL+IR+Fe II QSOs: II. IRAS 04505-2958 an explosive QSO with hypershell and a new scenario for galaxy formation and galaxy end
- A strong neutron burst in jet-like supernovae of spinstars
- On the dearth of C-enhanced metal-poor stars in the Galactic bulge
- Neutrino-dominated accretion flows: second nucleosynthesis factory in core-collapse supernovae and regulation of iron markets in galaxies
- Probing the Density in the Galactic Center Region: Wind-Blown Bubbles and High-Energy Proton Constraints
- A theoretical color-velocity correlation for supernovae associated with gamma-ray bursts
- Chemical Yields from Supernovae and Hypernovae
- Explaining the extended GeV gamma-ray emission adjacent to HESS J1825-137
- Modelling the Gamma-Ray Morphology of HESS J1804-216 from Two Supernova Remnants in a Hadronic Scenario
- The Connection between Gamma-Ray Bursts and Extremely Metal-Poor Stars as Nucleosynthetic Probes of the Early Universe
- First Stars -- Type Ib Supernovae Connection