Pulsating low-mass white dwarfs in the frame of new evolutionary sequences: II. Nonadiabatic analysis
arXiv:1510.00645 · doi:10.1051/0004-6361/201527162
Abstract
Low-mass ($M_{\star}/M_{\sun} \lesssim 0.45$) white dwarfs, including the so called extremely low-mass white dwarfs (ELM, $M_{\star}/M_{\sun } \lesssim 0.18-0.20$), are being currently discovered in the field of our Galaxy through dedicated photometric surveys. The fact that some of them pulsate opens the unparalleled chance for sounding their interiors. We present a detailed nonadiabatic pulsational analysis of such stars based on a new set of He-core white-dwarf models with masses ranging from to $0.4352 M_{\sun}$ derived by computing the non-conservative evolution of a binary system consisting of an initially $1 M_{\sun}$ ZAMS star and a $1.4 M_{\sun}$ neutron star. We have computed nonadiabatic radial modes and nonradial g and p modes to assess the dependence of the pulsational stability properties of these objects with stellar parameters such as the stellar mass, the effective temperature, and the convective efficiency. We found that a dense spectrum of unstable radial modes and nonradial g and p modes are driven by the kappa-gamma mechanism due to the partial ionization of H in the stellar envelope, in addition to low-order unstable g modes characterized by short pulsation periods which are significantly excited by H burning via the epsilon mechanism of mode driving. In all the cases, the characteristic times required for the modes to reach amplitudes large enough as to be observable (the -folding times) are always shorter than cooling timescales. We explore the dependence of the ranges of unstable mode periods (the longest and shortest excited periods) with the effective temperature, the stellar mass, the convective efficiency, and the harmonic degree of the modes. We also compare our theoretical predictions with the excited modes observed in the seven known variable low-mass white dwarfs (ELMVs), and found an excellent agreement.
15 pages, 17 figures, 3 tables. To be published in Astronomy and Astrophysics
References in corpus (13)
- Updated Electron-Conduction Opacities: The Impact on Low-Mass Stellar Models
- Pulsating White Dwarf Stars and Precision Asteroseismology
- White Dwarf Mass Distribution in the SDSS
- New white dwarf stars in the Sloan Digital Sky Survey Data Release 10
- The ELM Survey. I. A Complete Sample of Extremely Low Mass White Dwarfs
- The formation of low-mass helium white dwarfs orbiting pulsars: Evolution of low-mass X-ray binaries below the bifurcation period
- New nonadiabatic pulsation computations on full PG1159 evolutionary models: the theoretical GW Vir instability strip revisited
- 3D Model Atmospheres for Extremely Low-Mass White Dwarfs
- Precise Atmospheric Parameters for the Shortest Period Binary White Dwarfs: Gravitational Waves, Metals, and Pulsations
- WASP 1628+10 - an EL CVn-type binary with a very-low-mass stripped-red-giant star and multi-periodic pulsations
- PSR J1738+0333: The First Millisecond Pulsar + Pulsating White Dwarf Binary
- Pulsating low-mass white dwarfs in the frame of new evolutionary sequences: I. Adiabatic properties
- Short-period -mode pulsations in low-mass white dwarfs triggered by H shell burning
Cited by in corpus (22)
- Pulsating white dwarfs: new insights
- A Refined Search for Pulsations in White Dwarf Companions to Millisecond Pulsars
- Pruning The ELM Survey: Characterizing Candidate Low-Mass White Dwarfs Through Photometric Variability
- Discovery of 36 eclipsing EL CVn binaries found by the Palomar Transient Factory
- Pulsating low-mass white dwarfs in the frame of new evolutionary sequences: III. The pre-ELM white dwarf instability strip
- Discovery of Three Pulsating, Mixed-atmosphere, Extremely Low-mass White Dwarf Precursors
- Calibration of the mixing length theory for structures of helium-dominated atmosphere white dwarfs
- The sdA problem - II. Photometric and Spectroscopic Follow-up
- On the evolutionary status and pulsations of the recently discovered Blue Large-Amplitude Pulsators (BLAPs)
- The sdA problem I: Physical Properties
- Pulsational instabilities driven by the mechanism in hot pre-horizontal branch stars I. The Hot-Flasher Scenario
- Pulsating low-mass white dwarfs in the frame of new evolutionary sequences: IV. The secular rate of period change
- The Large Array Survey Telescope -- Science Goals
- Pulsating low-mass white dwarfs in the frame of new evolutionary sequences VI. Thin H-envelope sequences and asteroseismology of ELMV stars revisited
- Pulsating low-mass white dwarfs in the frame of new evolutionary sequences: V. Asteroseismology of ELMV white dwarf stars
- The McDonald Observatory search for pulsating sdA stars: asteroseismic support for multiple populations
- The formation of subdwarf A-type stars
- Pulsations powered by hydrogen shell burning in white dwarfs
- Tidally excited oscillations in hot white dwarfs
- Exploring the internal rotation of the extremely low-mass He-core white dwarf GD 278 with TESS asteroseismology
- A new instability domain of CNO-flashing low-mass He-core stars on their early white-dwarf cooling branches
- Searching for new variable white dwarfs: The discovery of the three new pulsating and three new binary systems