Spectroscopic Survey of G and K Dwarfs in the Hipparcos Catalog. I. Comparison between the Hipparcos and Photometric Parallaxes
arXiv:1601.01459 · doi:10.3847/0067-0049/222/2/19
Abstract
The tension between the Hipparcos parallax of the Pleiades and other independent distance estimates continues even after the new reduction of the Hipparcos astrometric data and the development of a new geometric distance measurement for the cluster. A short Pleiades distance from the Hipparcos parallax predicts a number of stars in the solar neighborhood that are sub-luminous at a given photospheric abundance. We test this hypothesis using spectroscopic abundances for a subset of stars in the Hipparcos catalog, which occupy the same region as the Pleiades in the color-magnitude diagram. We derive stellar parameters for 170 nearby G and K type field dwarfs in the Hipparcos catalog based on high-resolution spectra obtained using KPNO 4-m echelle spectrograph. Our analysis shows that, when the Hipparcos parallaxes are adopted, most of our sample stars follow empirical color-magnitude relations. A small fraction of stars are too faint compared to main-sequence fitting relations by mag, but the differences are marginal at a level partly due to relatively large parallax errors. On the other hand, we find that photometric distances of stars showing signatures of youth as determined from lithium absorption line strengths and chromospheric activity indices are consistent with the Hipparcos parallaxes. Our result is contradictory to a suggestion that the Pleiades distance from main-sequence fitting is significantly altered by stellar activity and/or the young age of its stars, and provides an additional supporting evidence for the long distance scale of the Pleiades.
34 pages, 17 figures, 7 tables. Accepted for publication in ApJS
References in corpus (12)
- Improved Age Estimation for Solar-Type Dwarfs Using Activity-Rotation Diagnostics
- The SEGUE Stellar Parameter Pipeline. I. Description and Initial Validation Tests
- New Grids of ATLAS9 Model Atmospheres
- The SEGUE Stellar Parameter Pipeline. II. Validation with Galactic Globular and Open Clusters
- The Distances to Open Clusters from Main-Sequence Fitting. III. Improved Accuracy with Empirically Calibrated Isochrones
- Measuring the vertical age structure of the Galactic disc using asteroseismology and SAGA
- A VLBI Resolution of the Pleiades Distance Controversy
- Near and Mid-IR Photometry of the Pleiades, and a New List of Substellar Candidate Members
- The Distances to Open Clusters from Main-Sequence Fitting. IV. Galactic Cepheids, the LMC, and the Local Distance Scale
- New BVIc Photometry of Low-mass Pleiades Stars: Exploring the Effects of Rotation on Broadband Colors
- Erratum: "Post-T Tauri Stars in the Nearest OB Association" (AJ, 124, 1670 [2002])
- The Distances to Open Clusters from Main-Sequence Fitting. V. Extension of Color Calibration and Test using Cool and Metal-Rich Stars in NGC 6791
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