Rossby numbers of fully and partially convective stars
arXiv:2212.13958 · doi:10.1093/mnras/stac3823
Abstract
We investigate stellar magnetic activity from the theoretical point of view, by using stellar evolution models to calculate theoretical convective turnover times () and Rossby numbers () for pre-main-sequence and main-sequence stars. The problem is that the canonical place where is usually determined (half a mixing length above the base of the convective zone) fails for fully convective stars and there is no agreement on this in the literature. Our calculations were performed with the ATON stellar evolution code. We concentrated our analysis on fully and partially convective stars motivated by recent observations of slowly rotating fully convective stars, whose X-ray emissions correlate with their Rossby numbers in the same way as in solar-like stars, suggesting that the presence of a tachocline is not required for magnetic field generation. We investigate the behaviour of over the stellar radius for stars of different masses and ages. As depends on , which varies strongly with the stellar radius, we use our theoretical results to determine a better radial position at which to calculate it for fully convective stars. Using our alternative locations, we fit a sample of 847 stars in the rotation-activity diagram ( versus ) with a two-part power-law function. Our fit parameters are consistent with previous work, showing that stars with are distributed around a saturation level in and, for stars with , clearly decays with with an exponent of .
11 pages, 12 figures, 3 tables. This is a pre-copyedited, author-produced PDF of an article accepted for publication in the main journal of Monthly Notices of the Royal Astronomical Society following peer review
References in corpus (8)
- How to Constrain Your M Dwarf: measuring effective temperature, bolometric luminosity, mass, and radius
- Large-scale magnetic topologies of late M dwarfs
- The H emission of nearby M dwarfs and its relation to stellar rotation
- Simulations of dynamo action in fully convective stars
- Persistent Magnetic Wreaths in a Rapidly Rotating Sun
- Solar-type dynamo behaviour in fully convective stars without a tachocline
- The effects of surface fossil magnetic fields on massive star evolution: II. Implementation of magnetic braking in MESA and implications for the evolution of surface rotation in OB stars
- Non-gray rotating stellar models and the evolutionary history of the Orion Nebular Cluster
Cited by in corpus (8)
- Stellar Cycles in Fully Convective Stars and a New Interpretation of Dynamo Evolution
- Magnetic Activity-Rotation-Age-Mass Relations in Late Pre-main Sequence Stars
- Magnetism in High-Mass Stars
- Further evidence of saturated, boosted, and disrupted magnetic braking from evolutionary tracks of cataclysmic variables
- Searching for stellar cycles on low mass stars using TESS data
- A modest change in magnetic braking at the fully convective boundary explains cataclysmic variable evolution
- Modeling Atmospheric Ion Escape from Kepler-1649 b and c over Time
- The impact of disk-locking on convective turnover times of low-mass pre-main sequence and main sequence stars