Planets with sizes between that of Earth (with radius R[subscript circle in cross]) and Neptune (about 4 R[subscript circle in cross]) are now known to be common around Sun-like stars. Most such planets have been discovered through the transit technique, by which the planet’s size can be determined from the fraction of starlight blocked by the planet as it passes in front of its star. Measuring the planet’s mass—and hence its density, which is a clue to its composition—is more difficult. Planets of size 2–4 R[subscript circle in cross] have proved to have a wide range of densities, implying a diversity of compositions, but these measurements did not extend to planets as small as Earth. Here we report Doppler spectroscopic measurements of th...
Discoveries from the prime Kepler mission demonstrated that small planets (<3 ) are common outcom...
We live in a golden era of exoplanet discovery and characterization. Since its launch in 2009, the K...
Since stars and their planets form from the same molecular clouds, stellar chemical composition can ...
Planets with sizes between that of Earth (with radius R⊕) and Neptune (about 4 R⊕) are now known to ...
The Kepler mission, combined with ground-based radial velocity (RV) follow-up and dynamical analyses...
Since the discovery of the first extrasolar giant planets around Sun-like stars, evolving observatio...
We report on the masses, sizes, and orbits of the planets orbiting 22 Kepler stars. There are 49 pla...
We report on the masses, sizes, and orbits of the planets orbiting 22 Kepler stars. There are 49 pla...
We constrain the densities of Earth- to Neptune-size planets around very cool (Te = 3660-4660K) Kepl...
We report on the masses, sizes, and orbits of the planets orbiting 22 Kepler stars. There are 49 pla...
Recent analyses1–4 of data from the NASA Kepler spacecraft5 have established that planets with radii...
The questions of how planets form and how common Earth-like planets are can be addressed by measurin...
Determining whether Earth-like planets are common or rare looms as a touchstone in the question of l...
International audienceWe report on the masses, sizes, and orbits of the planets orbiting 22 Kepler s...
Discoveries from the prime Kepler mission demonstrated that small planets (<3 ) are common outcom...
We live in a golden era of exoplanet discovery and characterization. Since its launch in 2009, the K...
Since stars and their planets form from the same molecular clouds, stellar chemical composition can ...
Planets with sizes between that of Earth (with radius R⊕) and Neptune (about 4 R⊕) are now known to ...
The Kepler mission, combined with ground-based radial velocity (RV) follow-up and dynamical analyses...
Since the discovery of the first extrasolar giant planets around Sun-like stars, evolving observatio...
We report on the masses, sizes, and orbits of the planets orbiting 22 Kepler stars. There are 49 pla...
We report on the masses, sizes, and orbits of the planets orbiting 22 Kepler stars. There are 49 pla...
We constrain the densities of Earth- to Neptune-size planets around very cool (Te = 3660-4660K) Kepl...
We report on the masses, sizes, and orbits of the planets orbiting 22 Kepler stars. There are 49 pla...
Recent analyses1–4 of data from the NASA Kepler spacecraft5 have established that planets with radii...
The questions of how planets form and how common Earth-like planets are can be addressed by measurin...
Determining whether Earth-like planets are common or rare looms as a touchstone in the question of l...
International audienceWe report on the masses, sizes, and orbits of the planets orbiting 22 Kepler s...
Discoveries from the prime Kepler mission demonstrated that small planets (<3 ) are common outcom...
We live in a golden era of exoplanet discovery and characterization. Since its launch in 2009, the K...
Since stars and their planets form from the same molecular clouds, stellar chemical composition can ...