A Measurement of Radius Inflation in the Pleiades and its Relation to Rotation and Lithium Depletion
arXiv:1609.04841 · doi:10.3847/1538-3881/153/3/101
Abstract
Precise measurements of eclipsing binary parameters and statistical studies of young clusters have suggested that some magnetically active low-mass dwarfs possess radii inflated by 5-15% relative to theoretical expectations. If true, this effect should be pronounced in young open clusters, due to the rapid rotation and strong magnetic activity of their most extreme members. We explore this possibility by determining empirical radii for 83 members of the nearby Pleiades open cluster, using spectral energy distribution fitting to establish with a typical accuracy of 3\% together with color and spectro-photometric indices to determine . We find several Pleiades members with radii inflated above radius- models from state-of-the-art calculations, and apparent dispersions in radii for the K-dwarfs of the cluster. Moreover, we demonstrate that this putative radius inflation correlates strongly with rotation rate, consistent with inflation of young stars by magnetic activity and/or starspots. We argue that this signal is not a consequence of starspot-induced color anomalies, binarity, or depth effects in the cluster, employing Gaia DR1 distances as a check. Finally, we consider the lithium abundances of these stars, demonstrating a triple correlation between rotation rate, radius inflation, and enhanced lithium abundance. Our result---already significant to 99.99% confidence---provides strong support for a magnetic origin of the inflated radii and lithium dispersion observed in young, low-mass stars.
33 pages, 25 figures, accepted to AJ
References in corpus (27)
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- Improving PARSEC models for very low mass stars
- Evolution of low-mass star and brown dwarf eclipsing binaries
- Search for Associations Containing Young stars (SACY): I. Sample & Searching Method
- Improved angular momentum evolution model for solar-like stars II. Exploring the mass dependence
- Eclipsing Binary Stars as Benchmarks for Trigonometric Parallaxes in the Gaia Era
- Lithium depletion and the rotational history of exoplanet host stars
- The Distances to Open Clusters from Main-Sequence Fitting. III. Improved Accuracy with Empirically Calibrated Isochrones
- The effect of activity on stellar temperatures and radii
- A VLBI Resolution of the Pleiades Distance Controversy
- Near and Mid-IR Photometry of the Pleiades, and a New List of Substellar Candidate Members
- Older and Colder: The impact of starspots on pre-main sequence stellar evolution
- Magnetic Inhibition of Convection and the Fundamental Properties of Low-Mass Stars. II. Fully Convective Main Sequence Stars
- Empirical Tests of Pre-Main-Sequence Stellar Evolution Models with Eclipsing Binaries
- Self-Consistent Magnetic Stellar Evolution Models of the Detached, Solar-Type Eclipsing Binary EF Aquarii
- Rotation, inflation, and lithium in the Pleiades
- IN-SYNC I: Homogeneous Stellar Parameters from High Resolution APOGEE Spectra for Thousands of Pre-main Sequence Star
- The Seven Sisters DANCe. I. Empirical isochrones, Luminosity and Mass Functions of the Pleiades cluster
- The Gaia-ESO Survey: Lithium depletion in the Gamma Velorum cluster and inflated radii in low-mass pre-main-sequence stars
- The rotation - Lithium depletion correlation in the beta Pictoris association and LDB age determination
- Stellar activity with LAMOST. I. Spot configuration in Pleiades
- The effect of starspots on the radii of low-mass pre-main sequence stars
- The effect of starspots on the ages of low-mass stars determined from the lithium depletion boundary
- New BVIc Photometry of Low-mass Pleiades Stars: Exploring the Effects of Rotation on Broadband Colors
- The G+M eclipsing binary V530 Orionis: A stringent test of magnetic stellar evolution models for low-mass stars
- The seven sisters DANCe.II. Proper motions and the lithium-rotation-activity connection for G and K Pleiads
- Evidence of radius inflation in stars approaching the slow-rotator sequence
Cited by in corpus (39)
- Empirical, Accurate Masses and Radii of Single Stars with TESS and Gaia
- WIYN Open Cluster Study. LXXV. Testing the Metallicity Dependence of Stellar Lithium Depletion Using Hyades-Aged Clusters. 1. Hyades & Praesepe
- The SPOTS Models: A Grid of Theoretical Stellar Evolution Tracks and Isochrones For Testing The Effects of Starspots on Structure and Colors
- All-sky Co-moving Recovery Of Nearby Young Members. (ACRONYM) II: The Beta Pictoris Moving Group
- Exploring the age dependent properties of M and L dwarfs using Gaia and SDSS
- Orbiting Clouds of Material at the Keplerian Co-Rotation Radius of Rapidly Rotating Low Mass WTTs in Upper Sco
- Stellar Rotation in the Gaia Era: Revised Open Clusters Sequences
- Stellar Rotation of T Tauri stars in the Orion Star-Forming Complex
- The effects of rotation on the lithium depletion of G- and K-dwarfs in Messier 35
- Rotation and Lithium Confirmation of a 500 Parsec Halo for the Open Cluster NGC 2516
- Light Elements in the Universe
- Starspots and Magnetism: Testing the Activity Paradigm in the Pleiades and M67
- M Dwarf rotation from the young clusters to the field. I. A Mass-Rotation Correlation at 10 Myr
- Gaia-ESO Survey: Role of magnetic activity and starspots on pre-main sequence lithium evolution
- Age spreads and the temperature dependence of age estimates in Upper Sco
- Lithium depletion and angular momentum transport in F-type and G-type stars in Galactic open clusters
- Isochronal age-mass discrepancy of young stars: SCExAO/CHARIS integral field spectroscopy of the HIP 79124 triple system
- Benchmarking MESA isochrones against the Hyades single star sequence
- A Wide Planetary Mass Companion Discovered Through the Citizen Science Project Backyard Worlds: Planet 9
- Stellar Spins in the Pleiades, Praesepe, and M35 Open Clusters
- The evolution of lithium in FGK dwarf stars: The Li rotation connection and the Li desert
- Planetary parameters, XUV environments and mass-loss rates for nearby gaseous planets with X-ray detected host-stars
- On accretion in the eclipsing polar BS Tri
- Stellar Characterization and Radius Inflation of Hyades M Dwarf Stars From the APOGEE Survey
- Li abundances for solar twins in the open cluster M67
- Nearby Young, Active, Late-type Dwarfs in Gaia's First Data Release
- Searching for new young stars in the northern hemisphere: The Pisces Moving Group
- A Low-Mass Pre-Main-Sequence Eclipsing Binary in Lower Centaurus Crux Discovered with TESS
- The Puzzling Story of Flare Inactive Ultra Fast Rotating M dwarfs. I. Exploring their Magnetic Fields
- Estimating the Convective Turnover Time
- TIC 43152097. The first eclipsing binary in NGC 2232
- A kinematically unbiased, all-sky search for nearby, young, low-mass stars
- LAMOST medium-resolution observations of the Pleiades
- The Ages of Optically Bright Sub-Clusters in the Serpens Star-Forming Region
- Flaring Activities of Fast Rotating Stars have Solar-like Latitudinal Distribution
- Orbital and stellar parameters for 2M06464003+0109157: a double-lined eclipsing binary of spotted, sub-solar twins
- 200,000+ Deep Learning-inferred Periods of Stellar Variability from the All-Sky Automated Survey for Supernovae
- Suppression of lithium depletion in young low-mass stars from fast rotation
- Using a neural network approach and starspots dependent models to predict effective temperatures and ages of young stars