The case for high precision in elemental abundances of stars in the era of large spectroscopic surveys
arXiv:1304.3409 · doi:10.1051/0004-6361/201321057
Abstract
A number of large spectroscopic surveys of stars in the Milky Way are under way or are being planned. In this context it is important to discuss the extent to which elemental abundances can be used as discriminators between different (known and unknown) stellar populations in the Milky Way. We aim to establish the requirements in terms of precision in elemental abundances, as derived from spectroscopic surveys of the Milky Way's stellar populations, in order to detect interesting substructures in elemental abundance space. We present a simple relation between the minimum number of stars needed to detect a given substructure and the precision of the measurements. The results are in agreement with recent small- and large-scale studies, with high and low precision, respectively. Large-number statistics cannot fully compensate for low precision in the abundance measurements and each survey should carefully evaluate what the main science drivers are for the survey and ensure that the chosen observational strategy will result in the precision necessary to answer the questions posed.
6 pages, 6 figures. Accepted for publication in Astronomy & Astrophysics
References in corpus (5)
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- The SEGUE Stellar Parameter Pipeline. I. Description and Initial Validation Tests
- The Radial Velocity Experiment (RAVE): second data release
- Chemical abundances of 451 stars from the HARPS GTO planet search program: Thin disc, thick disc, and planets
- Geometry of giant star model atmospheres: A consistency test
Cited by in corpus (21)
- Exploring the Milky Way stellar disk. A detailed elemental abundance study of 714 F and G dwarf stars in the Solar neighbourhood
- Chemical abundances of 1111 FGK stars from the HARPS GTO planet search program II: Cu, Zn, Sr, Y, Zr, Ba, Ce, Nd and Eu
- Stellar Chemical Abundances: In Pursuit of the Highest Achievable Precision
- Accurate abundance analysis of late-type stars: advances in atomic physics
- High-precision stellar abundances of the elements - methods and applications
- The GALAH Survey: Chemical tagging and chrono-chemodynamics of accreted halo stars with GALAH+ DR3 and eDR3
- Dissecting stellar chemical abundance space with t-SNE
- Disentangling the Galactic Halo with APOGEE: II. Chemical and Star Formation Histories for the Two Distinct Populations
- Mg line formation in late-type stellar atmospheres: II. Calculations in a grid of 1D models
- Prospects for Measuring Abundances of >20 Elements with Low-resolution Stellar Spectra
- The Bulge Metallicity Distribution from the APOGEE Survey
- Chemical separation of disc components using RAVE
- The hunt for the Milky Way's accreted disc
- Accelerated Fitting of Stellar Spectra
- The AMBRE Project: Spectrum normalisation influence on Mg abundances in the metal-rich Galactic disc
- Stellar science from a blue wavelength range - A possible design for the blue arm of 4MOST
- Tracing birth properties of stars with abundance clustering
- Empirical derivation of the metallicity evolution with time and radius using TNG50 Milky Way/Andromeda analogues
- The chemical enrichment of the Milky Way disk evaluated using conditional abundances
- The Belgian repository of fundamental atomic data and stellar spectra (BRASS) II. Quality assessment of atomic data for unblended lines in FGK stars
- Disentangling Milky Way halo populations at low metallicities using [Al/Fe]