Many hydrogen-deficient stars are characterized by surface abundance patterns that are hard to reconcile with conventional stellar evolution. Instead, it has been suggested that they may represent the result of a merger episode between a helium and a carbon–oxygen white dwarf. In this Letter, we present a nucleosynthesis study of the merger of a 0.4M helium white dwarf with a 0.8M carbon–oxygen white dwarf, by coupling the thermodynamic history of Smoothed Particle Hydrodynamics particles with a post-processing code. The resulting chemical abundance pattern, particularly for oxygen and fluorine, is in qualitative agreement with the observed abundances in R Coronae Borealis stars.Peer Reviewe
The R Coronae Borealis (RCB) stars are hydrogen-deficient, variable stars that are most likely the r...
The merger of two carbon-oxygen white dwarfs can lead either to a spectacular transient, stable nucl...
We have found that at least seven hydrogen-deficient carbon (HdC) and R Coronae Borealis (RGB) stars...
Many hydrogen-deficient stars are characterized by surface abundance patterns that are hard to recon...
We present a nucleosynthesis study of the merger of a 0.4 M⊙ helium white dwarf with a 0.8 M⊙ carbon...
Many hydrogen-deficient stars are characterized by surface abundance patterns that are hard to recon...
Many hydrogen-deficient stars are characterized by surface abundance patterns that are hard to recon...
The surface abundances of extreme helium (EHe) and RCoronaeBorealis (RCB) stars are discussed in ter...
In this thesis, I describe the evolution following the merger of two helium white dwarfs. Three sets...
White dwarfs are dense, cooling stellar embers consisting mostly of carbon and oxygen, or oxygen and...
We present high-resolution (R similar to 50,000) observations of near-IR transitions of CO and CN of...
A leading formation scenario for R Coronae Borealis (RCB) stars invokes the merger of degenerate He ...
R Coronae Borealis (RCB) stars are rare hydrogen-deficient carbon-rich variable supergiants thought ...
We carry out a comprehensive smooth particle hydrodynamics simulation survey of double-degenerate wh...
We present a large parameter study where we investigate the structure of white dwarf (WD) merger rem...
The R Coronae Borealis (RCB) stars are hydrogen-deficient, variable stars that are most likely the r...
The merger of two carbon-oxygen white dwarfs can lead either to a spectacular transient, stable nucl...
We have found that at least seven hydrogen-deficient carbon (HdC) and R Coronae Borealis (RGB) stars...
Many hydrogen-deficient stars are characterized by surface abundance patterns that are hard to recon...
We present a nucleosynthesis study of the merger of a 0.4 M⊙ helium white dwarf with a 0.8 M⊙ carbon...
Many hydrogen-deficient stars are characterized by surface abundance patterns that are hard to recon...
Many hydrogen-deficient stars are characterized by surface abundance patterns that are hard to recon...
The surface abundances of extreme helium (EHe) and RCoronaeBorealis (RCB) stars are discussed in ter...
In this thesis, I describe the evolution following the merger of two helium white dwarfs. Three sets...
White dwarfs are dense, cooling stellar embers consisting mostly of carbon and oxygen, or oxygen and...
We present high-resolution (R similar to 50,000) observations of near-IR transitions of CO and CN of...
A leading formation scenario for R Coronae Borealis (RCB) stars invokes the merger of degenerate He ...
R Coronae Borealis (RCB) stars are rare hydrogen-deficient carbon-rich variable supergiants thought ...
We carry out a comprehensive smooth particle hydrodynamics simulation survey of double-degenerate wh...
We present a large parameter study where we investigate the structure of white dwarf (WD) merger rem...
The R Coronae Borealis (RCB) stars are hydrogen-deficient, variable stars that are most likely the r...
The merger of two carbon-oxygen white dwarfs can lead either to a spectacular transient, stable nucl...
We have found that at least seven hydrogen-deficient carbon (HdC) and R Coronae Borealis (RGB) stars...