Modelling the rotational evolution of solar-like stars: the rotational coupling timescale
arXiv:1105.3125 · doi:10.1111/j.1365-2966.2011.19052.x
Abstract
We investigate the rotational evolution of solar-like stars with a focus on the internal angular momentum transport processes. The double zone model, in which the star's radiative core and convective envelope are assumed to rotate as solid bodies, is used to test simple relationships between the core-envelope coupling timescale, tau_c, and rotational properties, like the envelope angular velocity or the differential rotation at the core-envelope interface. The trial relationships are tested by fitting the model parameters to available observations via a Monte Carlo Markov Chain method. The synthetic distributions are tested for compatibility with their observational counterparts by means of the standard Kolmogorov-Smirnov (KS) test. A power-law dependence of tau_c on the inner differential rotation leads to a more satisfactory agreement with observations than a two-value prescription for tau_c, which would imply a dichotomy between the initially slow (P_rot > 3 d) and fast (P_rot < 3 d) rotators. However, we find it impossible to reconcile the high fraction of fast rotators in alpha Per with the rotation period distributions in stellar systems at earlier and later evolutionary stages. This could be explained by local environmental effects (e.g. early removal of circumstellar discs due to UV radiation and winds from nearby high-mass stars) or by observational biases. The low KS probability that the synthetic and observed distributions are not incompatible, found in some cases, may be due to over-simplified assumptions of the double zone model, but the large relative uncertainties in the age determination of very young clusters and associations are expected to play a relevant role. Other possible limitations and uncertainties are discussed.
11 pages, 7 figures, 2 tables, to be published in MNRAS
References in corpus (9)
- A Spitzer view of protoplanetary disks in the gamma Velorum cluster
- Lithium depletion and the rotational history of exoplanet host stars
- Fitting the young main-sequence; distances, ages and age spreads
- The Monitor project: Rotation of low-mass stars in NGC 2362 -- testing the disc regulation paradigm at 5 Myr
- Deep MMT Transit Survey of the Open Cluster M37 III: Stellar Rotation at 550 Myr
- The Monitor project: Rotation periods of low-mass stars in M50
- The Monitor project: Rotation of low-mass stars in the open cluster M34
- Chronology of star formation and disk evolution in the Eagle Nebula
- Effects of rotation and magnetic fields on the lithium abundance and asteroseismic properties of exoplanet-host stars
Cited by in corpus (35)
- The active lives of stars: a complete description of rotation and XUV evolution of F, G, K, and M dwarfs
- The radius discrepancy in low mass stars: single vs. binaries
- The evolution of surface magnetic fields in young solar-type stars I: the first 250 Myr
- How Good a Clock is Rotation? The Stellar Rotation-Mass-Age Relationship for Old Field Stars
- The Revolution Revolution: magnetic morphology driven spin-down
- Rotation periods for cool stars in the 4 Gyr-old open cluster M67, the solar-stellar connection, and the applicability of gyrochronology to at least solar age
- The Yale-Potsdam Stellar Isochrones (YaPSI)
- The evolution of the solar wind
- The Gaia-ESO Survey: Chromospheric Emission, Accretion Properties, and Rotation in Velorum and Chamaeleon I
- The Metastable Dynamo Model of Stellar Rotational Evolution
- Angular momentum transport efficiency in post-main sequence low-mass stars
- Rotational evolution of slow-rotators sequence stars
- Studying stellar spin-down with Zeeman-Doppler magnetograms
- EPIC 219388192 b - an inhabitant of the brown dwarf desert in the Ruprecht 147 open cluster
- Implications of Rapid Core Rotation in Red Giants for Internal Angular Momentum Transport in Stars
- The effects of rotation on the lithium depletion of G- and K-dwarfs in Messier 35
- Exploring the evolution of stellar rotation using Galactic kinematics
- Rapidly rotating second-generation progenitors for the blue hook stars of ω Cen
- Evaluating Gyrochronology on the Zero-Age-Main-Sequence: Rotation Periods in the Southern Open Cluster Blanco 1 from the KELT-South Survey
- Using rotation, magnetic activity and lithium to estimate the ages of low mass stars
- Magnetic braking of stellar cores in red giants and supergiants
- The Monitor Project: Stellar rotation at 13~Myr: I. A photometric monitoring survey of the young open cluster h~Per
- The influence of the environment on the spin evolution of low-mass stars. I. External photoevaporation of circumstellar disks
- Gaia-ESO Survey: global properties of clusters Trumpler 14 and 16 in the Carina Nebula
- Magnetic braking with MESA evolutionary models in the single star and LMXB regimes
- Time-dependent nonextensivity arising from the rotational evolution of solar-type stars
- Rotation and magnetic activity evolution of Sun-like stars
- Spin-down dynamics of magnetized solar-type stars
- Statistical Fitting of Evolution Models to Rotation Rates of Sun-Like Stars
- Evidence of New Magnetic Transitions in Late-Type Dwarfs from Gaia DR2
- TATOO: a tidal-chronology standalone tool to estimate the age of massive close-in planetary systems
- Destination exoplanet: Habitability conditions influenced bystellar winds properties
- Spectropolarimetric follow-up of 8 rapidly rotating, X-ray bright FK Comae candidates
- On the rotation periods of the components of the triple system TYC9300-0891-1AB/TYC9300-0529-1 in the Octans Association
- Dynamical model for spindown of solar-type stars