Presolar Grains from Novae
arXiv:astro-ph/0012465 · doi:10.1086/320235
Abstract
We report the discovery of five SiC grains and one graphite grain isolated from the Murchison carbonaceous meteorite whose major-element isotopic compositions indicate an origin in nova explosions. The grains are characterized by low 12C/13C (4-9) and 14N/15N (5-20) ratios, large excesses in 30Si (30Si/28Si ratios range to 2.1 times solar) and high 26Al/27Al ratios. These isotopic signatures are theoretically predicted for the ejecta from ONe novae and cannot be matched by any other stellar sources. Previous studies of presolar grains from primitive meteorites have shown that the vast majority formed in red giant outflows and supernova ejecta. Although a classical nova origin was suggested for a few presolar graphite grains on the basis of 22Ne enrichments, this identification is somewhat ambiguous since it is based only on one trace element. Our present study presents the first evidence for nova grains on the basis of major element isotopic compositions of single grains. We also present the results of nucleosynthetic calculations of classical nova models and compare the predicted isotopic ratios with those of the grains. The comparison points toward massive ONe novae if the ejecta are mixed with material of close-to-solar composition.
20 pages, 5 figures, 1 table. ApJ, in press
Cited by in corpus (54)
- Cool bottom processes on the thermally-pulsing AGB and the isotopic composition of circumstellar dust grains
- The Effects of Thermonuclear Reaction Rate Variations on Nova Nucleosynthesis: A Sensitivity Study
- The Imprint of Nova Nucleosynthesis in Presolar Grains
- Presolar grains from meteorites: Remnants from the early times of the solar system
- The Thermonuclear Runaway and the Classical Nova Outburst
- Carbon-Oxygen Classical Novae are Galactic Li Producers as well as Potential Supernova Ia Progenitors
- Synthesis of intermediate-mass elements in classical novae: from Si to Ca
- The Effects of the pep Nuclear Reaction and Other Improvements in the Nuclear Reaction Rate Library on Simulations of the Classical Nova Outburst
- Automated NanoSIMS Measurements of Spinel Stardust from the Murray Meteorite
- Nuclear astrophysics: the unfinished quest for the origin of the elements
- Stellar origin of 15N-rich presolar SiC grains of type AB: supernovae with explosive hydrogen burning
- Stellar Origins of Extremely - and -enriched Presolar SiC Grains: Novae or Supernovae?
- MESA and NuGrid simulations of classical novae: CO and ONe nova nucleosynthesis
- Nuclear ashes and outflow in the eruptive star Nova Vul 1670
- Horizons: Nuclear Astrophysics in the 2020s and Beyond
- Phosphorus-rich stars with unusual abundances are challenging theoretical predictions
- The chemical evolution of r-process elements from neutron star mergers: the role of a 2-phase interstellar medium
- On Presolar Stardust Grains from CO Classical Novae
- Presolar Silicon Carbide Grains of Types Y and Z: Their Molybdenum Isotopic Compositions and Stellar Origins
- Coordinated Analysis of Two Graphite Grains from the CO3.0 LAP 031117 Meteorite: First Identification of a CO Nova Graphite and a Presolar Iron Sulfide Subgrain
- Organic molecules, ions, and rare isotopologues in the remnant of the stellar-merger candidate, CK Vulpeculae (Nova 1670)
- Condensation of SiC Stardust in CO Nova Outbursts
- Absolute Determination of the 22Na(p,g) Reaction Rate in Novae
- R Coronae Borealis Stars are Viable Factories of Pre-solar Grains
- A New 17F(p,gamma)18Ne Reaction Rate and Its Implications for Nova Nucleosynthesis
- Cluster analysis of presolar silicon carbide grains: evaluation of their classification and astrophysical implications
- Synthesis of C-rich dust in CO nova ourbursts
- Three-dimensional simulations of the interaction between the nova ejecta, the accretion disk, and the companion star
- Isotopic 32S/33S ratio as a diagnostic of presolar grains from novae
- Low-energy Al -delayed proton decay and Na destruction in novae
- Presolar Grains from Novae: Evidence from Neon and Helium Isotopes in Comet Dust Collections
- Relative proton and gamma widths of astrophysically important states in 30S studied in the beta-decay of 31Ar
- Constraining nova observables: direct measurements of resonance strengths in 33S(p,γ)34Cl
- New 34Cl proton-threshold states and the thermonuclear 33S(p,gamma)34Cl rate in ONe novae
- Constraining the P(S reaction rate in ONe novae via the weak, low-energy, -delayed proton decay of Cl
- Radioactivities in Low- and Intermediate-Mass Stars
- Search for Na in novae supported by a novel method for measuring femtosecond nuclear lifetimes
- Branches of 33S(p,γ)34Cl at Oxygen-Neon Nova Temperatures
- Nuclear structure of 30S and its implications for nucleosynthesis in classical novae
- Slow Neutron-Capture Process: Low-mass AGB stars and presolar silicon carbide grains
- Prospects in Classical Nova Modeling and Nucleosynthesis
- A study of Cl excited states via S()
- Presolar grains
- Isotopic ratios for C, N, Si, Al, and Ti in C-rich presolar grains from massive stars
- Three-dimensional Supernova Models Provide New Insights into the Origins of Stardust
- A search for cool molecular gas in GK Persei and other classical novae
- HR4049: signature of nova nucleosynthesis ?
- Hydrogen burning of Si and its impact on presolar stardust grains from classical novae
- Proton capture on P in novae: On the existence of states at MeV and MeV in S
- Understanding the cosmic abundance of Na: lifetime measurements in Mg
- Nucleosynthesis in Type Ia Supernovae, Classical Novae, and Type I X-Ray Bursts. A Primer on Stellar Explosions
- Calcium Excess in Novae: Beyond Nuclear Physics Uncertainties
- Transfer reactions as a Tool in Nuclear Astrophysics
- Isotopic Compositions of Ruthenium Predicted from the NuGrid Project