Acoustic oscillations in stars near the tip of the red giant branch
arXiv:1009.5989 · doi:10.1051/0004-6361/201015205
Abstract
Small amplitude oscillations are observed in red giant branch (RGB) stars. Data on such oscillations are a source of information about the objects, notably about properties of convection in their envelopes and about the systems these objects inhabit. The OGLE-III catalog contains data for about 80 thousand small amplitude variable red giants (OSARGs) in the Large Magellanic Cloud. We want to explain variability in OSARGs as the solar-like oscillation and to associate the peaks in power spectra with frequencies of acoustic modes. We use data on reddening-free magnitudes of the objects and interpret them in terms of stellar physical parameters using tabulated isochrones calculated for ages and composition parameters corresponding to the upper RGB of the LMC. Massive data on the peak frequencies and amplitudes are compared with expectations for stochastically excited oscillations. The frequencies are also compared with those calculated for radial modes in envelope models with parameters taken from the isochrones. In stars close to the tip of the RGB, the peaks in power spectra are found in the 0.1-1.0 Hz range, which is consistent with extrapolation of the frequency-luminosity relation for the solar-like oscillation. The dominant peaks occur close to the first two radial overtones. The increase in amplitude with luminosity is slower than linear. The exponent s=0.9 is similar to what is found from recent analysis of CoRoT data on less luminous red giants. Frequency separations between dominant peaks are found to be smaller by about 20% than calculated separations between these modes. After examining various possibilities, we left this discrepancy unexplained. The small amplitude variability of stars at the RGB tip is likely to be caused by a stochastic excitation of acoustic oscillations, but interpreting of individual peaks in power spectra presents a problem.
Accepted for publication in Astronomy and Astrophysics, 6 pages, 6 figures
References in corpus (5)
- Excitation of solar-like oscillations across the HR diagram
- A Problem with the Clustering of Recent Measures of the Distance to the Large Magellanic Cloud
- Multisite campaign on the open cluster M67. II. Evidence for solar-like oscillations in red giant stars
- Non-adiabatic Oscillations of Red Giants
- Period-luminosity relations of pulsating M giants in the solar neighbourhood and the Magellanic Clouds
Cited by in corpus (18)
- Testing Scaling Relations for Solar-Like Oscillations from the Main Sequence to Red Giants using Kepler Data
- Giant star seismology
- The pulsation modes, masses and evolution of luminous red giants
- Non-radial oscillations in M-giant semi-regular variables: Stellar models and Kepler observations
- Period-luminosity relations in evolved red giants explained by solar-like oscillations
- A Bayesian approach to scaling relations for amplitudes of solar-like oscillations in Kepler stars
- Asteroseismology of luminous red giants with Kepler I: Long Period Variables with radial and non-radial modes
- Variability of M giant stars based on Kepler photometry: general characteristics
- Modelling Long-Period Variables -- II. Fundamental mode pulsation in the nonlinear regime
- Pulsation Modes of Long-Period Variables in the Period-Luminosity Plane
- On the pulsation modes of OGLE small amplitude red giant variables in the LMC
- VISTA variables in the Sagittarius dwarf spheroidal galaxy: pulsation- vs. dust-driven winds on the giant branches
- Dipolar modes in luminous red giants
- The variability behavior of CoRoT M-giant Stars
- From Solar-like to Mira stars: a unifying description of stellar pulsators in the presence of stochastic noise
- Stellar masses from granulation and oscillations of 23 bright red giants observed by BRITE - Constellation
- Self-Excited Pulsations and the Instability Strip of Long-Period Variables: the Transition from Small-Amplitude Red Giants to Semi-Regular Variables
- Red giant seismology: observations