Modelling of variability of the chemically peculiar star phi Draconis
arXiv:1510.01192 · doi:10.1051/0004-6361/201526647
Abstract
Context: The presence of heavier chemical elements in stellar atmospheres influences the spectral energy distribution (SED) of stars. An uneven surface distribution of these elements, together with flux redistribution and stellar rotation, are commonly believed to be the primary causes of the variability of chemically peculiar (CP) stars. Aims: We aim to model the photometric variability of the CP star PHI Dra based on the assumption of inhomogeneous surface distribution of heavier elements and compare it to the observed variability of the star. We also intend to identify the processes that contribute most significantly to its photometric variability. Methods: We use a grid of TLUSTY model atmospheres and the SYNSPEC code to model the radiative flux emerging from the individual surface elements of PHI Dra with different chemical compositions. We integrate the emerging flux over the visible surface of the star at different phases throughout the entire rotational period to synthesise theoretical light curves of the star in several spectral bands. Results: The synthetic light curves in the visible and in the near-UV regions are in very good agreement with the observed variability of the star. The lack of usable far-UV measurements of the star precludes making any conclusions about the correctness of our model in this spectral region. We also obtained 194 new BVRI observations of PHI Dra and improved its rotational period to P=1.716500(2). Conclusions: We show that the inhomogeneous distribution of elements, flux redistribution, and rotation of the star are fully capable of explaining the stellar variability in the visible and the near-UV regions. The flux redistribution is mainly caused by bound--free transitions of silicon and bound--bound transitions of iron.
References in corpus (3)
Cited by in corpus (20)
- The Kepler view of magnetic chemically peculiar stars
- Periodic variable A-F spectral type stars in the northern TESS continuous viewing zone
- Unravelling the baffling mystery of the ultrahot wind phenomenon in white dwarfs
- HD 99458: First time ever Ap-type star as a Scuti pulsator in a short period eclipsing binary?
- Mysterious, Variable, and Extremely Hot: White Dwarfs Showing Ultra-High Excitation Lines I. Photometric Variability
- HST/STIS analysis of the first main sequence pulsar CU Vir
- Stellar wind models of central stars of planetary nebulae
- Torsional oscillations and observed rotational period variations in early-type stars
- The nature of the photometric variability of HgMn stars: A test of simulated light curves of ϕ Phe against the TESS data
- Hot subdwarf wind models with accurate abundances I. Hydrogen dominated stars HD 49798 and BD+182647
- Detection of an extremely strong magnetic field in the double-degenerate binary merger product HD 144941
- Magnetic field topology, chemical spot distributions and photometric variability of the Ap star phi Draconis
- Search for stellar spots in field blue horizontal-branch stars
- Distorted surfaces of magnetic helium-peculiar stars: An application to a Cen
- Electron Scattering Emission in the Light Curves of Stars with Centrifugal Magnetospheres
- The nature of the light variability of magnetic Of?p star HD 191612
- Photometric signatures of corotating magnetospheres of hot stars governed by higher-order magnetic multipoles
- Understanding the rotational variability of K2 targets. HgMn star KIC 250152017 and blue horizontal branch star KIC 249660366
- Analysis of the multiple system with CP component phi Draconis
- Horizontal flows in the atmospheres of chemically peculiar stars