The age–metallicity relation (AMR) is a fundamental observational constraint for understanding how the Galactic disc formed and evolved chemically in time. However, there is not yet an agreement on the observational properties of the AMR for the solar neighbourhood, primarily due to the difficulty in obtaining accurate stellar ages for individual field stars. We have started an observational campaign for providing the much needed observational input by using wide white-dwarf–main-sequence (WDMS) binaries. White dwarfs are ‘natural’ clocks and can be used to derive accurate ages. Metallicities can be obtained from the main-sequence companions. Since the progenitors of white dwarfs and the main-sequence stars were born at the same time, WDMS ...
We present the chromospheric activity (CA) levels, metallicities, and full space motions for 41 F, G...
Observational tests of stellar and Galactic chemical evolution call for the joint knowledge of a sta...
We present the chromospheric activity (CA) levels, metallicities and full space motions for 41 F, G,...
The age-metallicity relation (AMR) is a fundamental observational constraint for un-derstanding how ...
The age–metallicity relation (AMR) is a fundamental observational constraint for understanding how t...
The age-metallicity relation (AMR) is a fundamental observational property to understand how the Gal...
The age-metallicity relation (AMR) is a fundamental observational property to understand how the Gal...
The age-metallicity relation of the solar neighbourhood is studied using a sample of 552 late-type d...
A comparison is made between the age-metallicity relation obtained from four different types of stud...
We derive stellar ages, from evolutionary tracks, and metallicities, from Stromgren photometry, for ...
We derive stellar ages, from evolutionary tracks, and metallicities, from Strömgren photometry, for ...
New ages are computed for stars in the Solar Neighbourhood from the Edvardsson et al. (1993) data se...
We derive stellar ages, from evolutionary tracks, and metallicities,from Strömgren photometry, for a...
Context. It has been known for a long time that stellar metallicity plays a significant role in the ...
The age-metallicity relation is a fundamental observational tool for constraining the chemical evolu...
We present the chromospheric activity (CA) levels, metallicities, and full space motions for 41 F, G...
Observational tests of stellar and Galactic chemical evolution call for the joint knowledge of a sta...
We present the chromospheric activity (CA) levels, metallicities and full space motions for 41 F, G,...
The age-metallicity relation (AMR) is a fundamental observational constraint for un-derstanding how ...
The age–metallicity relation (AMR) is a fundamental observational constraint for understanding how t...
The age-metallicity relation (AMR) is a fundamental observational property to understand how the Gal...
The age-metallicity relation (AMR) is a fundamental observational property to understand how the Gal...
The age-metallicity relation of the solar neighbourhood is studied using a sample of 552 late-type d...
A comparison is made between the age-metallicity relation obtained from four different types of stud...
We derive stellar ages, from evolutionary tracks, and metallicities, from Stromgren photometry, for ...
We derive stellar ages, from evolutionary tracks, and metallicities, from Strömgren photometry, for ...
New ages are computed for stars in the Solar Neighbourhood from the Edvardsson et al. (1993) data se...
We derive stellar ages, from evolutionary tracks, and metallicities,from Strömgren photometry, for a...
Context. It has been known for a long time that stellar metallicity plays a significant role in the ...
The age-metallicity relation is a fundamental observational tool for constraining the chemical evolu...
We present the chromospheric activity (CA) levels, metallicities, and full space motions for 41 F, G...
Observational tests of stellar and Galactic chemical evolution call for the joint knowledge of a sta...
We present the chromospheric activity (CA) levels, metallicities and full space motions for 41 F, G,...