Proxima Centauri reloaded: Unravelling the stellar noise in radial velocities
arXiv:1612.03786 · doi:10.1051/0004-6361/201630050
Abstract
The detection and characterisation of Earth-like planets with Doppler signals of the order of 1 m/s currently represent one of the greatest challenge for extrasolar-planet hunters. As results for such findings are often controversial, it is desirable to provide independent confirmations of the discoveries. Testing different models for the suppression of non-Keplerian stellar signals usually plaguing radial velocity data is essential to ensuring findings are robust and reproducible. Using an alternative treatment of the stellar noise to that discussed in the discovery paper, we re-analyse the radial velocity dataset that led to the detection of a candidate terrestrial planet orbiting the star Proxima Centauri. We aim to confirm the existence of this outstanding planet, and test the existence of a second planetary signal. Our technique jointly modelled Keplerian signals and residual correlated signals in radial velocities using Gaussian processes. We analysed only radial velocity measurements without including other ancillary data in the fitting procedure. In a second step, we have compared our outputs with results coming from photometry, to provide a consistent physical interpretation. Our analysis was performed in a Bayesian framework to quantify the robustness of our findings. We show that the correlated noise can be successfully modelled as a Gaussian process regression, and contains a periodic term modulated on the stellar rotation period and characterised by an evolutionary timescale of the order of one year. Both findings appear to be robust when compared with results obtained from archival photometry, thus providing a reliable description of the noise properties. We confirm the existence of a coherent signal described by a Keplerian orbit equation that can be attributed to the planet Proxima b [...]
Times of inferior conjunction were re-calculated to closer Epochs. Few typos corrected
References in corpus (9)
- The generalised Lomb-Scargle periodogram. A new formalism for the floating-mean and Keplerian periodograms
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- Planets and Stellar Activity: Hide and Seek in the CoRoT-7 system
- Optical, UV, and X-Ray Evidence for a 7-Year Stellar Cycle in Proxima Centauri
- Radial-Velocity Fitting Challenge. II. First results of the analysis of the data set
- Kepler-21b: A rocky planet around a V = 8.25 magnitude star
- Radial Velocity Fitting Challenge. I. Simulating the data set including realistic stellar radial-velocity signals
- The HADES RV Programme with HARPS-N@TNG - GJ 3998: An early M-dwarf hosting a system of Super-Earths
- Proxima Centauri as a Benchmark for Stellar Activity Indicators in the Near Infrared
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- Photometry as a proxy for stellar activity in radial velocity analyses
- Stellar & Planetary Parameters for K2's Late Type Dwarf Systems from C1 to C5
- A Gaussian Process Regression Reveals No Evidence for Planets Orbiting Kapteyn's Star
- Searching for the near infrared counterpart of Proxima c using multi-epoch high contrast SPHERE data at VLT
- Diving into the planetary system of Proxima with NIRPS -- Breaking the metre per second barrier in the infrared
- Far beyond the Sun: II. Probing the stellar magnetism of the young Sun ι Horologii from the photosphere to its corona
- Randomization Inference of Periodicity in Unequally Spaced Time Series with Application to Exoplanet Detection