Seismology of Procyon A: determination of mode frequencies, amplitudes, lifetimes, and granulation noise
arXiv:astro-ph/0612433 · doi:10.1051/0004-6361:20066369
Abstract
The F5 IV-V star Procyon A (aCMi) was observed in January 2001 by means of the high resolution spectrograph SARG operating with the TNG 3.5m Italian telescope (Telescopio Nazionale Galileo) at Canary Islands, exploiting the iodine cell technique. The time-series of about 950 spectra carried out during 6 observation nights and a preliminary data analysis were presented in Claudi et al. 2005. These measurements showed a significant excess of power between 0.5 and 1.5 mHz, with ~ 1 m/s peak amplitude. Here we present a more detailed analysis of the time-series, based on both radial velocity and line equivalent width analyses. From the power spectrum we found a typical p-mode frequency comb-like structure, identified with a good margin of certainty 11 frequencies in the interval 0.5-1400 mHz of modes with l=0,1,2 and 7< n < 22, and determined large and small frequency separations, Dn = 55.90 \pm 0.08 muHz and dnu_02=7.1 \pm 1.3 muHz, respectively. The mean amplitude per mode (l=0,1) at peak power results to be 0.45 \pm 0.07 m/s, twice larger than the solar one, and the mode lifetime 2 \pm 0.4 d, that indicates a non-coherent, stochastic source of mode excitation. Line equivalent width measurements do not show a significant excess of power in the examined spectral region but allowed us to infer an upper limit to the granulation noise.
10 pages, 15 figures, 4 tables. Accepted for publication in A&A
References in corpus (1)
Cited by in corpus (8)
- A multi-site campaign to measure solar-like oscillations in Procyon. I. Observations, Data Reduction and Slow Variations
- Asteroseismology and Interferometry
- A model for the Globular Cluster extreme anomalies
- Detection of solar-like oscillations in the G5 subgiant mu-Herculis
- Asteroseismology of Procyon with SOPHIE
- Recovery of p-modes in the combined 2004-2005 MOST observations of Procyon
- Oscillations in Procyon A: First results from a multi-site campaign
- Recent MOST space photometry