On the visibility of stellar oscillations
arXiv:1806.01055 · doi:10.1051/0004-6361/201730569
Abstract
Context. Recently our ability to study stars using asteroseismic techniques has increased dramatically, largely through the use of space based photometric observations. Work has also been done using ground based spectroscopic observations and more is expected in the near future from the SONG network. Unfortunately, the intensity observations have an inferior signal to noise ratio and details of the observations do not agree with theory, while the data analysis used in the spectroscopic method has often been based on overly simple models of the spectra. Aims. The aim is to improve the reliability of measurements of the parameters of stellar oscillations using spectroscopic observations and to enable the optimal use of the observations. Methods. While previous investigations have used 1D models, I use realistic magnetohydrodynamic simulations, combined with radiative transfer calculations, to estimate the effects of the oscillations on the spectra. I then calculate the visibility of the oscillation modes for a variety of stellar parameters and using various fitting methods. In addition to the methods used in previous investigations, I use a Singular Value Decomposition technique, which allows one to determine the information content available from the spectral perturbations and how that can be expressed most compactly. Finally I describe how the time series obtained may be analyzed. Results. It is shown that it is important to model the visibilities carefully and that the results deviate substantially from models previously used, especially in the presence of rotation. Detailed spectral modeling may be exploited to measure the properties of a larger number of modes than possible using the commonly used cross-correlation method. With moderate rotation, there is as much information in the line shape changes as in the Doppler shift and an outline of how to extract this is given.
11 pages, 15 figures, accepted for publication in A&A
References in corpus (8)
- Standing on the shoulders of Dwarfs: the asteroseismic LEGACY sample I - oscillation mode parameters
- First Results From The Hertzsprung Song Telescope: Asteroseismology Of The G5 Subgiant Star {\Mu}Her
- Asteroseismology of alpha Cen A. Evidence of rotational splitting
- Frequency, splitting, linewidth and amplitude estimates of low-l p modes of alpha Cen A: analysis of WIRE photometry
- A new method for the spectroscopic identification of stellar non-radial pulsation modes. I. The method and numerical tests
- Improved Helioseismic Analysis of Medium-l Data from the Michelson Doppler Imager
- Rotational splitting as a function of mode frequency for six Sun-like stars
- Spatially resolved spectroscopy across stellar surfaces. II. High-resolution spectra across HD209458 (G0V)
Cited by in corpus (3)
- Expanding the frontiers of cool-dwarf asteroseismology with ESPRESSO. Detection of solar-like oscillations in the K5 dwarf Indi
- Estimating the nonstructural component of the helioseismic surface term using hydrodynamic simulations
- The ratio of horizontal to vertical displacement in solar oscillations estimated from combined SO/PHI and SDO/HMI observations