We present a detailed elemental abundance study of 90 F and G dwarf, turn-off, and subgiant stars in the Galactic bulge. Based on high-resolution spectra acquired during gravitational microlensing events, stellar ages and abundances for 11 elements (Na, Mg, Al, Si, Ca, Ti, Cr, Fe, Zn, Y and Ba) have been determined. Four main findings are presented: (1) a wide metallicity distribution with distinct peaks at [Fe/H] = −1.09, −0.63, −0.20, + 0.12, + 0.41; (2) ahigh fraction of intermediate-age to young stars where at [Fe/H] > 0 more than 35% are younger than 8 Gyr, and for [Fe/H] ≲ −0.5 most stars are 10 Gyr or older; (3) several episodes of significant star formation in the bulge has been identified: 3, 6, 8, and 11 Gyr ago; (4) tentatively t...
We present elemental abundances of 13 microlensed dwarf and subgiant stars in the Galactic bulge, wh...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...
We present a detailed elemental abundance study of 90 F and G dwarf, turn-off, and subgiant stars in...
We present a detailed elemental abundance study of 90 F and G dwarf, turn-off, and subgiant stars in...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of what w...
Based on high-resolution spectra obtained during gravitational microlensing events we pres...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of what w...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of what w...
Based on high-resolution (R approximate to 42 000 to 48 000) and high signal-to-noise (S/N approxima...
Based on high-resolution (R ≈ 42 000 to 48 000) and high signal-to-noise (S/N ≈ 50 to 150) spect...
The four main findings about the age and abundance structure of the Milky Way bulge based on microle...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of wha...
We have determined detailed elemental abundances and stellar ages for a sample of now 38 microlensed...
We present elemental abundances of 13 microlensed dwarf and subgiant stars in the Galactic bulge, wh...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...
We present a detailed elemental abundance study of 90 F and G dwarf, turn-off, and subgiant stars in...
We present a detailed elemental abundance study of 90 F and G dwarf, turn-off, and subgiant stars in...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of what w...
Based on high-resolution spectra obtained during gravitational microlensing events we pres...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of what w...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of what w...
Based on high-resolution (R approximate to 42 000 to 48 000) and high signal-to-noise (S/N approxima...
Based on high-resolution (R ≈ 42 000 to 48 000) and high signal-to-noise (S/N ≈ 50 to 150) spect...
The four main findings about the age and abundance structure of the Milky Way bulge based on microle...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of wha...
We have determined detailed elemental abundances and stellar ages for a sample of now 38 microlensed...
We present elemental abundances of 13 microlensed dwarf and subgiant stars in the Galactic bulge, wh...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...