A multi-site campaign to measure solar-like oscillations in Procyon. I. Observations, Data Reduction and Slow Variations
arXiv:0807.3794 · doi:10.1086/592040
Abstract
We have carried out a multi-site campaign to measure oscillations in the F5 star Procyon A. We obtained high-precision velocity observations over more than three weeks with eleven telescopes, with almost continuous coverage for the central ten days. This represents the most extensive campaign so far organized on any solar-type oscillator. We describe in detail the methods we used for processing and combining the data. These involved calculating weights for the velocity time series from the measurement uncertainties and adjusting them in order to minimize the noise level of the combined data. The time series of velocities for Procyon shows the clear signature of oscillations, with a plateau of excess power that is centred at 0.9 mHz and is broader than has been seen for other stars. The mean amplitude of the radial modes is 38.1 +/- 1.3 cm/s (2.0 times solar), which is consistent with previous detections from the ground and by the WIRE spacecraft, and also with the upper limit set by the MOST spacecraft. The variation of the amplitude during the observing campaign allows us to estimate the mode lifetime to be 1.5 d (+1.9/-0.8 d). We also find a slow variation in the radial velocity of Procyon, with good agreement between different telescopes. These variations are remarkably similar to those seen in the Sun, and we interpret them as being due to rotational modulation from active regions on the stellar surface. The variations appear to have a period of about 10 days, which presumably equals the stellar rotation period or, perhaps, half of it. The amount of power in these slow variations indicates that the fractional area of Procyon covered by active regions is slightly higher than for the Sun.
accepted for publication in ApJ. Minor change to Fig 11
References in corpus (10)
- The amplitude of solar oscillations using stellar techniques
- The BOES spectropolarimeter for Zeeman measurements of stellar magnetic fields
- Detection of solar-like oscillations in the G5 subgiant mu-Herculis
- HD 203608, a quiet asteroseismic target in the old galactic disk
- The Current Status of Asteroseismology
- Asteroseismology of Procyon with SOPHIE
- Seismology of Procyon A: determination of mode frequencies, amplitudes, lifetimes, and granulation noise
- Observing solar-like oscillations
- Recovery of p-modes in the combined 2004-2005 MOST observations of Procyon
- Searching for p-modes in MOST Procyon data: Another view
Cited by in corpus (27)
- SOAP 2.0: A tool to estimate the photometric and radial velocity variations induced by stellar spots and plages
- Standing on the shoulders of Dwarfs: the asteroseismic LEGACY sample I - oscillation mode parameters
- An ancient extrasolar system with five sub-Earth-size planets
- Asteroseismology of solar-type stars
- Global Seismology of the Sun
- Radial-Velocity Fitting Challenge. II. First results of the analysis of the data set
- Solar-like oscillations with low amplitude in the CoRoT target HD 181906
- Radial Velocity Fitting Challenge. I. Simulating the data set including realistic stellar radial-velocity signals
- The EXPRES Stellar Signals Project II. State of the Field in Disentangling Photospheric Velocities
- Measuring precise radial velocities on individual spectral lines. III. Dependence of stellar activity signal on line formation temperature
- The Impact of Stellar Surface Magnetoconvection and Oscillations on the Detection of Temperate, Earth-Mass Planets Around Sun-Like Stars
- Modeling Convective Core Overshoot and Diffusion in Procyon Constrained by Asteroseismic Data
- Seismic performance
- Asteroseismology of the Hyades red giant and planet host epsilon Tauri
- Detection of solar-like oscillations in the bright red giant stars Psc and Tau from a 190-day high-precision spectroscopic multisite campaign
- Detection of Solar-Like Oscillations, Observational Constraints, and Stellar Models for Cyg, the Brightest Star Observed by the {\it Kepler} Mission
- Convective Excitation and Damping of Solar-like Oscillations
- Expanding the frontiers of cool-dwarf asteroseismology with ESPRESSO. Detection of solar-like oscillations in the K5 dwarf Indi
- Nearby stars as gravitational wave detectors
- Current methods for analyzing light curves of solar-like stars
- Fundamental properties of solar-like oscillating stars from frequencies of minimum : I. Model computations for solar composition
- KOI-3890: A high mass-ratio asteroseismic red-giantM-dwarf eclipsing binary undergoing heartbeat tidal interactions
- Asteroseismology of main-sequence F stars with \textit{Kepler}: overcoming short mode lifetimes
- Luminaries in the Sky: The TESS Legacy Sample of Bright Stars. I. Asteroseismic detections in naked-eye main-sequence and sub-giant solar-like oscillators
- Two's a crowd? Characterising the effect of photometric contamination on the extraction of the global asteroseismic parameter in red-giant binaries
- An Introduction to Data Analysis in Asteroseismology
- Pushing the Limit of Asteroseismic Detection for Cool Dwarfs using TESS and Deep Learning