On the effect of pulsar evaporation on the cooling of white dwarfs
arXiv:2107.04188 · doi:10.1093/mnras/stab1937
Abstract
Evolution of a large part of low-mass X-ray binaries (LMXBs) leads to the formation of rapidly rotating pulsars with a helium white dwarf (He WD) companion. Observations indicate that some He WDs in binary pulsar systems are ultracool (with the effective temperatures 4000\, K). It is hard to cool down a He WD to such low temperatures within the Hubble time, because a thick hydrogen envelope was left behind around the He core after the mass transfer process. A possible mechanism that can accelerate the WD cooling is the evaporative wind mass loss from the He WD driven by the high-energy radiation from the recycled pulsar. In this paper, we evolve a large number of LMXBs and investigate the influence of the pulsar's high-energy radiation on the WD cooling with different input parameters, including the neutron star's spin-down luminosity, the evaporation efficiency and the metallicity of the companion star. By comparing our results with observations we note that, for relatively hot He WDs (with K), standard WD cooling without evaporation considered is able to reproduce their temperatures, while evaporation is probably required for the He WDs with relatively low temperatures ( <5000 K).
10 pages, 4 figures, accepted for publication in MNRAS
References in corpus (17)
- Modules for Experiments in Stellar Astrophysics (MESA)
- A Massive Pulsar in a Compact Relativistic Binary
- The ATNF Pulsar Catalogue
- Laser Interferometer Space Antenna
- Updated Electron-Conduction Opacities: The Impact on Low-Mass Stellar Models
- Found: The missing blue opacity in atmosphere models of cool hydrogen white dwarfs
- Formation of millisecond pulsars with CO white dwarf companions - II. Accretion, spin-up, true ages and comparison to MSPs with He white dwarf companions
- The Green Bank Northern Celestial Cap Pulsar Survey - I: Survey Description, Data Analysis, and Initial Results
- The relativistic pulsar-white dwarf binary PSR J1738+0333 I. Mass determination and evolutionary history
- The masses of PSR J1911-5958A and its white dwarf companion
- On the evolution of rotating accreting white dwarfs and type Ia supernovae
- Ultracool white dwarfs and the age of the Galactic disc
- An extremely low-mass He white dwarf orbiting the millisecond pulsar J1342+2822B in the globular cluster M3
- The ultracool helium-atmosphere white dwarf companion of PSR J0740+6620?
- Evolution of Low-Mass X-ray Binaries: the Effect of Donor Evaporation
- Evolution of post-Accretion Induced Collapse Binaries: the Effect of Evaporation
- Searching for optical companions to four binary millisecond pulsars with the Gran Telescopio Canarias