SOAP 2.0: A tool to estimate the photometric and radial velocity variations induced by stellar spots and plages
arXiv:1409.3594 · doi:10.1088/0004-637X/796/2/132
Abstract
This paper presents SOAP 2.0, a new version of the SOAP code that estimates in a simple way the photometric and radial velocity variations induced by active regions. The inhibition of the convective blueshift inside active regions is considered, as well as the limb brightening effect of plages, a quadratic limb darkening law, and a realistic spot and plage contrast ratio. SOAP 2.0 shows that the activity-induced variation of plages is dominated by the inhibition of the convective blueshift effect. For spots, this effect becomes significant only for slow rotators. In addition, in the case of a major active region dominating the activity-induced signal, the ratio between the full width at half maximum (FWHM) and the RV peak-to-peak amplitudes of the cross correlation function can be used to infer the type of active region responsible for the signal for stars with \vsini\kms. A ratio smaller than three implies a spot, while a larger ratio implies a plage. Using the observation of HD189733, we show that SOAP 2.0 manages to reproduce the activity variation as well as previous simulations when a spot is dominating the activity-induced variation. In addition, SOAP 2.0 also reproduces the activity variation induced by a plage on the slowly rotating star Cen B, which is not possible using previous simulations. Following these results, SOAP 2.0 can be used to estimate the signal induced by spots and plages, but also to correct for it when a major active region is dominating the RV variation.
28 pages, 15 figures, accepted for publication in ApJ after minor revisions (taken into account in this version)
References in corpus (16)
- Stellar Activity Masquerading as Planets in the Habitable Zone of the M dwarf Gliese 581
- The HARPS search for southern extra-solar planets. X. A m sin i = 11 Mearth planet around the nearby spotted M dwarf GJ 674
- Hubble Space Telescope times-series photometry of the planetary transit of HD189733: no moon, no rings, starspots
- TW Hydrae: evidence of stellar spots instead of a Hot Jupiter
- Stellar activity of planetary host star HD 189733
- Patterns of photometric and chromospheric variation among Sun-like stars: A 20-year perspective
- Search for exoplanets with the radial-velocity technique: quantitative diagnostics of stellar activity
- The Transit Light Curve Project. V. System Parameters and Stellar Rotation Period of HD 189733
- The Kepler-10 planetary system revisited by HARPS-N: A hot rocky world and a solid Neptune-mass planet
- A multi-site campaign to measure solar-like oscillations in Procyon. I. Observations, Data Reduction and Slow Variations
- Measurement of the Spin-Orbit Alignment in the Exoplanetary System HD 189733
- The variability of Sun-like stars: reproducing observed photometric trends
- Spectropolarimetric observations of the transiting planetary system of the K dwarf HD 189733
- The Rotation Period of the Planet-Hosting Star HD 189733
- Looking for Super-Earths in the HD 189733 System: A Search for Transits in Most Space-Based Photometry
- Deriving stellar inclination of slow rotators using stellar activity
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- CERES: A Set of Automated Routines for Echelle Spectra
- Three years of Sun-as-a-star radial-velocity observations on the approach to solar minimum
- Radial-Velocity Fitting Challenge. II. First results of the analysis of the data set
- Stellar activity mimics a habitable-zone planet around Kapteyn's star
- Filtering solar-like oscillations for exoplanet detection in radial velocity observations
- Radial Velocity Data Analysis with Compressed Sensing Techniques
- HARPS-N Solar Radial-Velocity Variations Are Dominated By Large, Bright Magnetic Regions
- Stellar activity as noise in exoplanet detection II. Application to M dwarfs
- The GAPS Programme with HARPS-N at TNG. VII. Putting exoplanets in the stellar context: magnetic activity and asteroseismology of Bootis A
- Radial Velocity Fitting Challenge. I. Simulating the data set including realistic stellar radial-velocity signals
- Insights on the Spectral Signatures of Stellar Activity and Planets from PCA
- The Solar Twin Planet Search. V. Close-in, low-mass planet candidates and evidence of planet accretion in the solar twin HIP 68468
- Extrasolar planets and brown dwarfs around AF-type stars. IX. The HARPS southern sample
- Temporal evolution and correlations of optical activity indicators measured in Sun-as-a-star observations
- Understanding stellar activity-induced radial velocity jitter using simultaneous K2 photometry and HARPS RV measurements
- The Impact of Stellar Surface Magnetoconvection and Oscillations on the Detection of Temperate, Earth-Mass Planets Around Sun-Like Stars
- A new method of correcting radial velocity time series for inhomogeneous convection
- Detecting transit signatures of exoplanetary rings using SOAP3.0
- Latitudinal differential rotation in the solar analogues 16 Cyg A and B
- Stellar activity as noise in exoplanet detection I. Methods and application to solar-like stars and activity cycles
- Deriving stellar inclination of slow rotators using stellar activity
- Recovering planet radial velocity signals in the presence of starspot activity in fully convective stars
- Can stellar activity make a planet seem misaligned?
- Is the activity level of HD 80606 influenced by its eccentric planet?
- Disentangling planetary and stellar activity features in the CoRoT-2 light curve
- Radial velocity observations of the 2015 Mar 20 eclipse - A benchmark Rossiter-McLaughlin curve with zero free parameters
- Sectoral r modes and periodic RV variations of Sun-like stars
- The Solar Benchmark: Rotational Modulation of the Sun Reconstructed from Archival Sunspot Records
- Noise Sources in Photometry and Radial Velocities
- What is the mass of alpha Cen B b?
- Magnetism and activity of planet hosting stars