Context. The Bulge is the least understood major stellar population of the Milky Way. Most of what we know about the formation and evolution of the Bulge comes from bright giant stars. The underlying assumption that giants represent all the stars, and accurately trace the chemical evolution of a stellar population, is under debate. In particular, recent observations of a few microlensed dwarf stars give a very different picture of the evolution of the Bulge from that given by the giant stars. Aims. We aim to resolve the apparent discrepancy between Bulge metallicity distributions derived from microlensed dwarf stars and giant stars. Additionally, we aim to put observational constraints on the elemental abundance trends and chemical evolutio...
Based on high-resolution (R ≈ 42 000 to 48 000) and high signal-to-noise (S/N ≈ 50 to 150) spect...
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...
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...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of wha...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...
Based on high-resolution (R approximate to 42 000 to 48 000) and high signal-to-noise (S/N approxima...
Based on high-resolution spectra obtained during gravitational microlensing events we pres...
Based on high-resolution spectra obtained during gravitational microlensing events we pres...
Based on high-resolution (R approximate to 42 000 to 48 000) and high signal-to-noise (S/N approxima...
Based on high-resolution spectra obtained during gravitational microlensing events we pres...
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 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...
Based on high-resolution (R ≈ 42 000 to 48 000) and high signal-to-noise (S/N ≈ 50 to 150) spect...
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...
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...
Context. The Bulge is the least understood major stellar population of the Milky Way. Most of wha...
Based on high-resolution spectra obtained during gravitational microlensing events we present a deta...
Based on high-resolution (R approximate to 42 000 to 48 000) and high signal-to-noise (S/N approxima...
Based on high-resolution spectra obtained during gravitational microlensing events we pres...
Based on high-resolution spectra obtained during gravitational microlensing events we pres...
Based on high-resolution (R approximate to 42 000 to 48 000) and high signal-to-noise (S/N approxima...
Based on high-resolution spectra obtained during gravitational microlensing events we pres...
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 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...
Based on high-resolution (R ≈ 42 000 to 48 000) and high signal-to-noise (S/N ≈ 50 to 150) spect...
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...