International audienceWe present evidence from the RAdial Velocity Experiment (RAVE) survey of chemically separated, kinematically distinct disc components in the solar neighbourhood. We apply probabilistic chemical selection criteria to separate our sample into α-low ('thin disc') and α-high ('thick disc') sequences. Using newly derived distances, which will be utilized in the upcoming RAVE DR5, we explore the kinematic trends as a function of metallicity for each of the disc components. For our α-low disc, we find a negative trend in the mean rotational velocity (V φ) as a function of iron abundance ([Fe/H]). We measure a positive gradient ∂V φ /∂[Fe/H] for the α-high disc, consistent with results from high-resolution surveys. We also fin...
Using the RAdial Velocity Experiment fourth data release (RAVE DR4), and a new metallicity calibrati...
Context. High-resolution spectroscopic surveys of stars indicate that the Milky Way thin and thick d...
Models of the chemical evolution of our Galaxy are extended to include radial migration of stars and...
We present evidence from the RAdial Velocity Experiment (RAVE) survey of chemically separated, kinem...
Aims. We study the relations between stellar kinematics and chemical abundances of a large sample of...
Aims. We study the relations between stellar kinematics and chemical abundances of a large sample of...
Aims. We study the relations between stellar kinematics and chemical abundances of a large sample of...
By selecting in the Radial Velocity Experiment-fourth data release (RAVE-DR4) survey the stars locat...
By selecting in the Radial Velocity Experiment-fourth data release (RAVE-DR4) survey the stars locat...
We study the kinematics of the Galactic thin and thick disk populations using stars from the RAVE su...
By selecting in the Radial Velocity Experiment-fourth data release (RAVE-DR4) survey the stars locat...
We explore the connections between stellar age, chemistry, and kinematics across a Galactocentric di...
Abundance data on solar neighbourhood stars suggest the presence of chemically-distinct stellar comp...
We study the kinematics of the Galactic thin and thick disk populations us-ing stars from the RAVE s...
We study the eccentricity distribution of a thick-disc sample of stars (defined as those withVy > 50...
Using the RAdial Velocity Experiment fourth data release (RAVE DR4), and a new metallicity calibrati...
Context. High-resolution spectroscopic surveys of stars indicate that the Milky Way thin and thick d...
Models of the chemical evolution of our Galaxy are extended to include radial migration of stars and...
We present evidence from the RAdial Velocity Experiment (RAVE) survey of chemically separated, kinem...
Aims. We study the relations between stellar kinematics and chemical abundances of a large sample of...
Aims. We study the relations between stellar kinematics and chemical abundances of a large sample of...
Aims. We study the relations between stellar kinematics and chemical abundances of a large sample of...
By selecting in the Radial Velocity Experiment-fourth data release (RAVE-DR4) survey the stars locat...
By selecting in the Radial Velocity Experiment-fourth data release (RAVE-DR4) survey the stars locat...
We study the kinematics of the Galactic thin and thick disk populations using stars from the RAVE su...
By selecting in the Radial Velocity Experiment-fourth data release (RAVE-DR4) survey the stars locat...
We explore the connections between stellar age, chemistry, and kinematics across a Galactocentric di...
Abundance data on solar neighbourhood stars suggest the presence of chemically-distinct stellar comp...
We study the kinematics of the Galactic thin and thick disk populations us-ing stars from the RAVE s...
We study the eccentricity distribution of a thick-disc sample of stars (defined as those withVy > 50...
Using the RAdial Velocity Experiment fourth data release (RAVE DR4), and a new metallicity calibrati...
Context. High-resolution spectroscopic surveys of stars indicate that the Milky Way thin and thick d...
Models of the chemical evolution of our Galaxy are extended to include radial migration of stars and...