The dependence of stellar mass and angular momentum losses on latitude and on active region and dipolar magnetic fields
arXiv:1509.08936 · doi:10.1088/0004-637X/813/1/40
Abstract
Rotation evolution of late-type stars is dominated by magnetic braking and the underlying factors that control this angular momentum loss are important for the study of stellar spin-down. In this work, we study angular momentum loss as a function of two different aspects of magnetic activity using a calibrated Alfvén wave-driven magnetohydrodynamic wind model: the strengths of magnetic spots and their distribution in latitude. By driving the model using solar and modified solar surface magnetograms, we show that the topology of the field arising from the net interaction of both small-scale and large-scale field is important for spin-down rates and that angular momentum loss is not a simple function of large scale magnetic field strength. We find that changing the latitude of magnetic spots can modify mass and angular momentum loss rates by a factor of two. The general effect that causes these differences is the closing down of large-scale open field at mid- and high-latitudes by the addition of the small-scale field. These effects might give rise to modulation of mass and angular momentum loss through stellar cycles, and present a problem for ab initio attempts to predict stellar spin-down based on wind models. For all the magnetogram cases considered here, from dipoles to various spotted distributions, we find that angular momentum loss is dominated by the mass loss at mid-latitudes. The spin-down torque applied by magnetized winds therefore acts at specific latitudes and is not evenly distributed over the stellar surface, though this aspect is unlikely to be important for understanding spin-down and surface flows on stars.
13 pages, 7 figures, 1 table, accepted for publication in ApJ
References in corpus (15)
- Large-scale magnetic topologies of late M dwarfs
- Stellar magnetism: empirical trends with age and rotation
- The Mass-Dependence of Angular Momentum Evolution in Sun-Like Stars
- The effect of magnetic topology on thermally-driven winds: towards a general formulation of the braking law
- Stellar Winds on the Main-Sequence II: the Evolution of Rotation and Winds
- Magnetic cycles of the planet-hosting star tauBootis
- The magnetic field of the planet-hosting star Bootis
- Powerful Winds from Low-Mass Stars: V374 Peg
- Magnetic fields on young, moderately rotating Sun-like stars - I: HD~35296 and HD~29615
- Observation and Modeling of the Solar-Cycle Variation of the Meridional Flow
- On the Effect of Magnetic Spots on Stellar Winds and Angular Momentum Loss
- Impact of non-uniform surface magnetic fields on stellar winds
- A further 'degree of freedom' in the rotational evolution of stars
- A magnetic cycle of tau Bootis? The coronal and chromospheric view
- X-ray Evidence for a Pole-Dominated Corona on AB Dor
Cited by in corpus (45)
- Weakened magnetic braking as the origin of anomalously rapid rotation in old field stars
- The rotation and Galactic kinematics of mid M dwarfs in the Solar Neighborhood
- Suppression of Coronal Mass Ejections in active stars by an overlying large-scale magnetic field: A numerical study
- The Revolution Revolution: magnetic morphology driven spin-down
- Poking the Beehive From Space: K2 Rotation Periods For Praesepe
- The Space Weather of Proxima Centauri b
- The Threatening Environment of the TRAPPIST-1 Planets
- K2 Rotation Periods for low-mass Hyads and the Implications for Gyrochronology
- The Effect of Combined Magnetic Geometries on Thermally Driven Winds II: Dipolar, Quadrupolar and Octupolar Topologies
- Stellar Coronal Mass Ejections I. Estimating occurrence frequencies and mass-loss rates
- The Missing Magnetic Morphology Term in Stellar Rotation Evolution
- Simulating the environment around planet-hosting stars - II. Stellar winds and inner astrospheres
- Age dependence of wind properties for solar type stars: a 3d study
- An Improved Age-Activity Relationship for Cool Stars older than a Gigayear
- The Effect of Magnetic Variability on Stellar Angular Momentum Loss I: The Solar Wind Torque During Sunspot Cycles 23 & 24
- Li Evolution and the Open Cluster NGC 6819: A Correlation Between Li Depletion and Spindown in Dwarfs More Massive Than the F-Dwarf Li-Dip
- EvryFlare II: Rotation Periods of the Cool Flare Stars in TESS Across Half the Southern Sky
- MESA models with magnetic braking
- Stellar energetic particles in the magnetically turbulent habitable zones of TRAPPIST-1-like planetary systems
- Mass Loss via Solar Wind and Coronal Mass Ejections During Solar Cycle 23 and 24
- The solar wind from a stellar perspective: how do low-resolution data impact the determination of wind properties?
- The Magnetic Nature of the Cataclysmic Variable Period Gap
- Chemo-kinematic ages of eccentric-planet-hosting M dwarf stars
- Direct Detection of Solar Angular Momentum Loss with the Wind Spacecraft
- Magnetic braking with MESA evolutionary models in the single star and LMXB regimes
- The Solar Wind Environment in Time
- Constraints on Magnetic Braking from the G8 Dwarf Stars 61 UMa and Cet
- Weakened Magnetic Braking in the Exoplanet Host Star 51 Peg
- Solar Angular Momentum Loss Over the Past Several Millennia
- Revisiting the space weather environment of Proxima Centauri b
- Numerical quantification of the wind properties of cool main sequence stars
- The Contribution of Alpha Particles to the Solar Wind Angular Momentum Flux in the Inner Heliosphere
- Transition of latitudinal differential rotation as a possible cause of weakened magnetic braking of solar-type stars
- Polarimeter to Unify the Corona and Heliosphere (PUNCH)
- Weakened Magnetic Braking Signals the Collapse of the Global Stellar Dynamo
- TESS asteroseismology of Hydri: a subgiant with a born-again dynamo
- Towards a holistic magnetic braking model from the evolution of cataclysmic variables to stellar spin-down -- I: the spin-down of fully convective M-dwarfs
- Magnetic braking below the cataclysmic variable period gap and the observed dearth of period bouncers
- Stellar Coronal and Wind Models: Impact on Exoplanets
- First Doppler image and starspot-corrected orbit for Andromedae: A multifaceted activity analysis
- NIRwave: A wave-turbulence-driven solar wind model constrained by PSP observations
- Dynamical model for spindown of solar-type stars
- Towards a holistic magnetic braking model -- II: explaining several long-term internal- and surface-spin properties of solar-like stars and the Sun
- Activity and Rotation of Nearby Field M Dwarfs in the TESS Southern Continuous Viewing Zone
- Chromospheric emission of solar-type stars with asteroseismic ages