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Related papers: Understanding stellar activity-induced radial velo…

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Current exoplanet surveys using the radial velocity (RV) technique are targeting M dwarfs because any habitable zone terrestrial-mass planets will induce a high RV and orbit on shorter periods than for more massive stars. One of the main…

We present a new, simple method to predict activity-induced radial velocity variations using high-precision time-series photometry. It is based on insights from a simple spot model, has only two free parameters (one of which can be…

Solar and Stellar Astrophysics · Physics 2015-05-30 S. Aigrain , F. Pont , S. Zucker

Stellar variability is a key obstacle in reaching the sensitivity required to recover Earth-like exoplanetary signals using the radial velocity (RV) detection method. To explore activity signatures in Sun-like stars, we present SolAster, a…

We study the relation between stellar rotation and magnetic activity for a sample of 134 bright, nearby M dwarfs observed in the Kepler Two-Wheel (K2) mission during campaigns C0 to C4. The K2 lightcurves yield photometrically derived…

Solar and Stellar Astrophysics · Physics 2016-08-17 B. Stelzer , M. Damasso , A. Scholz , S. P. Matt , --

Context. Although the new generation of radial-velocity (RV) instruments such as ESPRESSO are expected to reach the long-term precision required to find other earths, the RV measurements are contaminated by some signal from stellar…

Earth and Planetary Astrophysics · Physics 2020-01-15 M. Cretignier , X. Dumusque , R. Allart , F. Pepe , C. Lovis

Precision radial velocity (RV) measurements continue to be a key tool to detect and characterise extrasolar planets. While instrumental precision keeps improving, stellar activity remains a barrier to obtain reliable measurements below 1-2…

The ever increasing level of precision achieved by present and future radial-velocity instruments is opening the way to discovering very low-mass, long-period planets (e.g. solar-system analogs). These systems will be detectable as…

Earth and Planetary Astrophysics · Physics 2015-05-14 N. C. Santos , J. Gomes da Silva , C. Lovis , C. Melo

In a companion paper, we have conducted an in-depth analysis of radial velocity jitter of over 600 stars, examining the astrophysical origins including stellar granulation, oscillation, and magnetic activity. In this paper, we highlight a…

Earth and Planetary Astrophysics · Physics 2020-04-30 Jacob K. Luhn , Jason T. Wright , Howard Isaacson

Photospheric stellar activity might be an important source of noise and confusion in the radial-velocity measurements. RV planet search surveys as well as follow-up of photometric transit surveys require a deeper understanding and…

Earth and Planetary Astrophysics · Physics 2015-03-17 I. Boisse , F. Bouchy , G. Hebrard , X. Bonfils , N. C. Santos , S. Vauclair

Due to their low mass and luminosity, M dwarfs are ideal targets if one hopes to find low-mass planets similar to Earth by using the radial velocity (RV) method. However, stellar magnetic cycles could add noise or even mimic the RV signal…

Solar and Stellar Astrophysics · Physics 2015-06-04 J. Gomes da Silva , N. C. Santos , X. Bonfils , X. Delfosse , T. Forveille , S. Udry , X. Dumusque , C. Lovis

We present simultaneous ground-based radial velocity (RV) measurements and space-based photometric measurements of the young and active K dwarf Epsilon Eridani. These measurements provide a data set for exploring methods of identifying and…

Solar and Stellar Astrophysics · Physics 2016-06-29 Matthew J. Giguere , Debra A. Fischer , Cyril X. Y. Zhang , Jaymie M. Matthews , Chris Cameron , Gregory W. Henry

Previous simulations predicted the activity-induced radial-velocity (RV) variations of M dwarfs to range from $\sim1$ cm/s to $\sim1$ km/s, depending on various stellar and activity parameters. We investigate the observed relations between…

Stellar activity patterns are responsible for jitter effects that are observed at different timescales and amplitudes. These effects are currently in the focus of many exoplanet search projects, since the lack of a well-defined…

Earth and Planetary Astrophysics · Physics 2016-02-10 Enrique Herrero , Ignasi Ribas , Carme Jordi , Juan Carlos Morales , Manuel Perger , Albert Rosich

Detecting small planets via the radial velocity method remains challenged by signals induced by stellar variability, versus the effects of the planet(s). Here, we explore using Gaussian Process (GP) regression with Transiting Exoplanet…

Based on optical high-resolution spectra obtained with CFHT/ESPaDOnS, we present new measurements of activity and magnetic field proxies of 442 low-mass K5-M7 dwarfs. The objects were analysed as potential targets to search for…

Solar and Stellar Astrophysics · Physics 2017-09-07 C. Moutou , E. M. Hebrard , J. Morin , L. Malo , P. Fouque , A. Torres-Rivas , E. Martioli , X. Delfosse , E. Artigau , R. Doyon

Magnetic activity is currently the primary limiting factor in radial velocity (RV) exoplanet searches. Even inactive stars, such as the Sun, exhibit RV jitter of the order of a few ms$^{-1}$ due to active regions on their surfaces. Time…

Solar and Stellar Astrophysics · Physics 2024-01-25 V. Perdelwitz , T. Trifonov , J. T. Teklu , K. R. Sreenivas , L. Tal-Or

Inhibition of the convective blueshift in active regions is a major contribution to the radial velocity variations, at least for solar-like stars. A common technique to correct for this component is to model the RV as a linear function of…

Solar and Stellar Astrophysics · Physics 2020-01-08 Nadège Meunier , Anne-Marie Lagrange , Sylvain Cuzacq

The measurement of exoplanet masses using the radial velocity (RV) technique is currently limited by stellar activity, which introduces quasiperiodic variability signals that must be modeled and removed to enhance the sensitivity of the RV…

Stellar activity poses one of the main obstacles for the detection and characterisation of small exoplanets around cool stars, as it can induce radial velocity (RV) signals that can hide or mimic the presence of planetary companions.…

Radial velocity (RV) jitter represents an intrinsic limitation on the precision of Doppler searches for exoplanets that can originate from both instrumental and astrophysical sources. We aim to determine the RV jitter floor in M dwarfs and…