Binaries discovered by the SPY project. II. HE 1414-0848: a double degenerate with a mass close to the Chandrasekhar limit
arXiv:astro-ph/0203145 · doi:10.1051/0004-6361:20020361
Abstract
In the course of our search for double degenerate (DD) binaries as potential progenitors of type Ia supernovae with the UVES spectrograph at the ESO VLT (ESO SN Ia Progenitor surveY - SPY) we discovered that the white dwarf HE 1414-0848 is a double-lined DA+DA binary with an orbital period of P = 12h 25m 39s. Semi-amplitudes of 128km/s and 100km/s are derived for the individual components. The amplitude ratio and the measured difference in gravitational redshift is used to estimate the masses of the individual components: 0.55Msol and 0.71Msol. Hence the total mass of the HE 1414-0848 system is 1.26Msol, only 10% below the Chandrasekhar limit. The results of a model atmosphere analysis are consistent with our mass estimated from the orbit. Temperatures of the individual components are also determined. Possible scenarios for the formation of this system are discussed. The system will merge due to loss of angular momentum via gravitational wave radiation after two Hubble times. HE 1414-0848 does not qualify as a SN Ia progenitor, but it is the most massive close DD known today.
7 pages, 7 figures, A&A, accepted
References in corpus (2)
Cited by in corpus (33)
- Remnant evolution after a carbon-oxygen white dwarf merger
- Reconstructing the evolution of white dwarf binaries: further evidence for an alternative algorithm for the outcome of the common-envelope phase in close binaries
- The hot subdwarf B + white dwarf binary KPD 1930+2752 - a Supernova Type Ia progenitor candidate
- Binaries discovered by the SPY project. IV. Five single-lined DA double white dwarfs
- Parameter estimation for Galactic binaries by LISA
- The ESO supernovae type Ia progenitor survey (SPY)
- Type Ia Supernova models arising from different distributions of igniting points
- Nickel-Rich Outflows from Accretion Disks Formed by the Accretion-Induced Collapse of White Dwarfs
- On the Formation of Double White Dwarfs through Stable Mass Transfer and a Common Envelope
- Double white dwarfs and LISA
- The Discovery of Binary White Dwarfs that will Merge within 500 Myr
- Sensitivity study of explosive nucleosynthesis in Type Ia supernovae: I. Modification of individual thermonuclear reaction rates
- Impact of Type Ia Supernova Ejecta on a Helium-star Binary Companion
- Rates, Progenitors and Cosmic Mix of Type Ia Supernovae
- NLTE Model Atmosphere Analysis of the LMC Supersoft X-ray Source CAL 83
- Six detached white-dwarf close binaries
- Modelling the formation of double white dwarfs
- A Catalogue of Potential Post Common Envelope Binaries
- The binary fraction, separation distribution, and merger rate of white dwarfs from SPY
- Spin up in RX J0806+15 - the shortest period binary
- Binaries discovered by the SPY project. III. HE2209-1444: a massive, short period double degenerate
- Binaries discovered by the SPY project V. GD 687 - a massive double degenerate binary progenitor that will merge within a Hubble time
- Convection and Spin-Up During Common Envelope Evolution: The Formation of Short-Period Double White Dwarfs
- Phase Coherent Timing of RX J0806.3+1527 with ROSAT and CHANDRA
- Theoretical cosmic Type Ia supernova rates
- Orbital periods and component masses of three double white dwarfs
- Binaries discovered by the SPY survey VI. Discovery of a low mass companion to the hot subluminous planetary nebula central star EGB\,5 - A recently ejected common envelope?
- Influence of a mass transfer stability criterion on double white dwarf populations
- Two new Double-lined Spectroscopic Binary White Dwarfs
- Type Ia Supernovae in semi-detached binary systems
- A New Merging Double Degenerate Binary in the Solar Neighborhood
- Constructing Synchronously Rotating Double White Dwarf Binaries
- Circumstellar Disks at White Dwarfs: Observations