The Astrophysical Variance in Gaia-RVS Spectra
arXiv:2108.02218 · doi:10.3847/1538-4357/ac1ac8
Abstract
Large surveys are providing a diversity of spectroscopic observations with Gaia alone set to deliver millions of Ca-triplet-region spectra across the Galaxy. We aim to understand the dimensionality of the chemical abundance information in the Gaia-RVS data to inform galactic archaeology pursuits. We fit a quadratic model of four primary sources of variability, described by labels of , , [Fe/H], and [/Fe], to the normalized flux of 10,802 red-clump stars from the Gaia-RVS-like ARGOS survey. We examine the residuals between ARGOS spectra and the models and find that the models capture the flux variability across of the wavelength region. The remaining residual variance is concentrated to the Ca-triplet features, at an amplitude up to of the normalized flux. We use principal component analysis on the residuals and find orthogonal correlations in the Ca-triplet core and wings. This variability, not captured by our model, presumably marks departures from the completeness of the 1D-LTE label description. To test the indication of low-dimensionality, we turn to abundance-space to infer how well we can predict measured [Si/H], [O/H], [Ca/H], [Ni/H], and [Al/H] abundances from the Gaia-RVS-like RAVE survey with models of , , [Fe/H], and [Mg/Fe]. We find that we can near-entirely predict these abundances. Using high-precision APOGEE abundances, we determine that a measurement uncertainty of 0.03 dex is required to capture additional information from these elements. This indicates that a four-label model sufficiently describes chemical abundance variance for S/N 200 per pixel, in Gaia-RVS spectra.
16 pages, 10 figures, 3 appendices. Accepted in ApJ, section updated based on cited author feedback
References in corpus (12)
- The Radial Velocity Experiment (RAVE): Fifth Data Release
- APOGEE Data and Spectral Analysis from SDSS Data Release 16: Seven Years of Observations Including First Results from APOGEE-South
- The NIR Ca II triplet at low metallicity - Searching for extremely low-metallicity stars in classical dwarf galaxies
- The solar chromosphere at high resolution with IBIS. I. New insights from the Ca II 854.2 nm line
- ARGOS II: The Galactic Bulge Survey
- Stellar chromospheric activity of 1,674 FGK stars from the AMBRE-HARPS sample I. A catalogue of homogeneous chromospheric activity
- The Infrared Ca II triplet as metallicity indicator
- Prospects for Measuring Abundances of >20 Elements with Low-resolution Stellar Spectra
- Integrated Light Chemical Tagging Analyses of Seven M31 Outer Halo Globular Clusters from the Pan-Andromeda Archaeological Survey
- A2A: 21,000 bulge stars from the ARGOS survey with stellar parameters on the APOGEE scale
- Disentangled Representation Learning for Astronomical Chemical Tagging
- A data-driven model of nucleosynthesis with chemical tagging in a lower-dimensional latent space