We report initial results from our long term search using precision radial velocities for planetary-mass companions located within a few AU of stars younger than the Sun. Based on a sample of >150 stars, we define a floor in the radial velocity scatter, σ_(RV), as a function of the chromospheric activity level R'_(HK). This lower bound to the jitter, which increases with increasing stellar activity, sets the minimum planet mass that could be detected. Adopting a median activity-age relationship reveals the astrophysical limits to planet masses discernable via radial velocity monitoring, as a function of stellar age. Considering solar-mass primaries having the mean jitter-activity level, when they are younger than 100 / 300 / 1000 Myr, the s...
Radial velocity (RV) identification of extrasolar planets has historically been dominated by optical...
Future generations of precise radial velocity (RV) surveys aim to achieve sensitivity sufficient to ...
We introduce our Radial Velocity Survey for Planets around Young stars (RVSPY), characterise our tar...
We report initial results from our long term search using precision radial velocities for planetary-...
International audienceContext. Stars in young nearby associations are the only targets that allow gi...
Radial velocity searches for substellar mass companions have focused primarily on stars older than 1...
Radial velocity (RV) detection of planets is hampered by astrophysical processes on the surfaces of ...
Context. Stars in young nearby associations are the only targets that allow giant planet searches in...
In this dissertation, we conduct a census and assessment of the nearest young Sun-like stars and inv...
In this dissertation, we conduct a census and assessment of the nearest young Sun-like stars and inv...
Context. The effect of stellar activity on radial velocity (RV) measurements appears to be a limitin...
Context. The occurrence rate and period distribution of (giant) planets around young stars is still ...
International audienceContext. The effect of stellar activity on radial velocity (RV) measurements a...
Radial velocity (RV) identification of extrasolar planets has historically been dominated by optical...
Theoretical predictions suggest that the distribution of planets in very young stars could be very d...
Radial velocity (RV) identification of extrasolar planets has historically been dominated by optical...
Future generations of precise radial velocity (RV) surveys aim to achieve sensitivity sufficient to ...
We introduce our Radial Velocity Survey for Planets around Young stars (RVSPY), characterise our tar...
We report initial results from our long term search using precision radial velocities for planetary-...
International audienceContext. Stars in young nearby associations are the only targets that allow gi...
Radial velocity searches for substellar mass companions have focused primarily on stars older than 1...
Radial velocity (RV) detection of planets is hampered by astrophysical processes on the surfaces of ...
Context. Stars in young nearby associations are the only targets that allow giant planet searches in...
In this dissertation, we conduct a census and assessment of the nearest young Sun-like stars and inv...
In this dissertation, we conduct a census and assessment of the nearest young Sun-like stars and inv...
Context. The effect of stellar activity on radial velocity (RV) measurements appears to be a limitin...
Context. The occurrence rate and period distribution of (giant) planets around young stars is still ...
International audienceContext. The effect of stellar activity on radial velocity (RV) measurements a...
Radial velocity (RV) identification of extrasolar planets has historically been dominated by optical...
Theoretical predictions suggest that the distribution of planets in very young stars could be very d...
Radial velocity (RV) identification of extrasolar planets has historically been dominated by optical...
Future generations of precise radial velocity (RV) surveys aim to achieve sensitivity sufficient to ...
We introduce our Radial Velocity Survey for Planets around Young stars (RVSPY), characterise our tar...