R Coronae Borealis Stars are Viable Factories of Pre-solar Grains
arXiv:1507.06367 · doi:10.1088/0004-637X/809/2/184
Abstract
We present a new theoretical estimate for the birthrate of R Coronae Borealis (RCB) stars that is in agreement with recent observational data. We find the current Galactic birthrate of RCB stars to be 25% of the Galactic rate of Type Ia supernovae, assuming that RCB stars are formed through the merger of carbon-oxygen and helium-rich white dwarfs. Our new RCB birthrate ( yr) is a factor of 10 lower than previous theoretical estimates. This results in roughly 180--540 RCB stars in the Galaxy, depending on the RCB lifetime. From the theoretical and observational estimates, we calculate the total dust production from RCB stars and compare this rate to dust production from novae and born-again asymptotic giant branch (AGB) stars. We find that the amount of dust produced by RCB stars is comparable to the amounts produced by novae or born-again post-AGB stars, indicating that these merger objects are a viable source of carbonaceous pre-solar grains in the Galaxy. There are graphite grains with carbon and oxygen isotopic ratios consistent with the observed composition of RCB stars, adding weight to the suggestion that these rare objects are a source of stardust grains.
Accepted for publication in The Astrophysical Journal, 7 pages
References in corpus (9)
- Do most planetary nebulae derive from binaries? I Population synthesis model of the galactic planetary nebula population produced by singlestars and binaries
- Helium enrichment and Carbon-star Production in Metal-rich Populations
- Every interacting double white dwarf binary may merge
- Optically visible post-AGB/RGB stars and young stellar objects in the Small Magellanic Cloud: candidate selection, spectral energy distributions and spectroscopic examination
- PopCORN: Hunting down the differences between binary population synthesis codes
- The effect of helium accretion efficiency on rates of Type Ia supernovae: double-detonations in accreting binaries
- Fluorine in R Coronae Borealis Stars
- The onset of photoionization in Sakurai's Object (V4334 Sgr)
- Direct imaging of a massive dust cloud around R Coronae Borealis
Cited by in corpus (18)
- The ELM Survey. VII. Orbital Properties of Low Mass White Dwarf Binaries
- Most Double Degenerate Low Mass White Dwarf Binaries Merge
- Diffuse Galactic antimatter from faint thermonuclear supernovae in old stellar populations
- Do meteoritic silicon carbide grains originate from asymptotic giant branch stars of super-solar metallicity?
- Evolutionary models for R Coronae Borealis stars
- A plethora of new R Coronae Borealis stars discovered from a dedicated spectroscopic follow-up survey
- Evolving R Coronae Borealis Stars with MESA
- Discovery of a Detached, Eclipsing 40 min Period Double White Dwarf Binary and a Friend: Implications for He+CO White Dwarf Mergers
- Modeling R Coronae Borealis Stars: Effects of He-Burning Shell Temperature and Metallicity
- The dawn of a new era for dustless HdC stars with GAIA eDR3
- Fast and Luminous Transients from the Explosions of Long Lived Massive White Dwarf Merger Remnants
- Census of R Coronae Borealis stars I: Infrared light curves from Palomar Gattini IR
- Merging of a CO WD and a He-rich white dwarf to produce a type Ia supernovae
- The role of dredge-up in double white dwarf mergers
- The Double Dust Envelopes of R Coronae Borealis Stars
- An All-Sky Search For R Coronae Borealis Stars in ASAS-SN
- Hydrodynamic simulations of WD-WD mergers and the origin of RCB stars
- Tidal heating in detached double white dwarf binaries