We investigate biases in the measurement of exoplanet orbital parameters – especially eccentricity – from radial velocity (RV) observations. In this contribution we consider single-planet systems. We create a mock catalog of RV data, choosing planet masses and orbital periods, and observing patterns to mimic those of actual RV surveys. Using Markov chain Monte Carlo (MCMC) simulations, we generate a posterior sample for each mock data set, calculate best-fit orbital parameters for each data set, and compare these to the true values. We find that the precision of our derived eccentricities is most closely related to the effective signal-to-noise ratio, K√N/σ, where K is the velocity amplitude, σ is the effective single-measurement precision...
M. Tuomi, S. Kotiranta, ad M. Kaasalainen, 'The complementarity of astrometric and radial velocity e...
Radial velocity surveys are beginning to reach the time baselines required to detect Jupiter analogs...
When a star is orbited by planetary companions, it describes a nearly epicyclic motion around the ce...
We have analysed radial velocity measurements for known transiting exoplanets to study the empirical...
Planetary orbital eccentricities are key to probing the formation and evolution pathways of exoplane...
The detection of exoplanets through direct imaging has produced numerous new positive identification...
International audienceWe have analysed radial velocity measurements for known transiting exoplanets ...
The eccentricity distribution of exoplanets is known from radial velocity surveys to be divergent fr...
The nearly circular (mean eccentricity (e) over bar approximate to 0.06) and coplanar (mean mutual i...
Solar system planets move on almost circular orbits. In strong contrast, many massive gas giant exop...
Exoplanet discoveries have proved numerous planetary system orbital configurations, including the di...
Exoplanet orbital eccentricities encode key information about planetary system formation and evoluti...
In radial velocity (RV) observations, a pair of extrasolar planets near a 2:1 orbital resonance can ...
The two dominant features in the distribution of orbital parameters for close-in exo-planets are the...
Context. In radial velocity (RV) observations, a pair of extrasolar planets near a 2:1 orbital reson...
M. Tuomi, S. Kotiranta, ad M. Kaasalainen, 'The complementarity of astrometric and radial velocity e...
Radial velocity surveys are beginning to reach the time baselines required to detect Jupiter analogs...
When a star is orbited by planetary companions, it describes a nearly epicyclic motion around the ce...
We have analysed radial velocity measurements for known transiting exoplanets to study the empirical...
Planetary orbital eccentricities are key to probing the formation and evolution pathways of exoplane...
The detection of exoplanets through direct imaging has produced numerous new positive identification...
International audienceWe have analysed radial velocity measurements for known transiting exoplanets ...
The eccentricity distribution of exoplanets is known from radial velocity surveys to be divergent fr...
The nearly circular (mean eccentricity (e) over bar approximate to 0.06) and coplanar (mean mutual i...
Solar system planets move on almost circular orbits. In strong contrast, many massive gas giant exop...
Exoplanet discoveries have proved numerous planetary system orbital configurations, including the di...
Exoplanet orbital eccentricities encode key information about planetary system formation and evoluti...
In radial velocity (RV) observations, a pair of extrasolar planets near a 2:1 orbital resonance can ...
The two dominant features in the distribution of orbital parameters for close-in exo-planets are the...
Context. In radial velocity (RV) observations, a pair of extrasolar planets near a 2:1 orbital reson...
M. Tuomi, S. Kotiranta, ad M. Kaasalainen, 'The complementarity of astrometric and radial velocity e...
Radial velocity surveys are beginning to reach the time baselines required to detect Jupiter analogs...
When a star is orbited by planetary companions, it describes a nearly epicyclic motion around the ce...