The effect of magnetic topology on thermally-driven winds: towards a general formulation of the braking law
arXiv:1410.8746 · doi:10.1088/0004-637X/798/2/116
Abstract
Stellar winds are thought to be the main process responsible for the spin down of main-sequence stars. The extraction of angular momentum by a magnetized wind has been studied for decades, leading to several formulations for the resulting torque. However, previous studies generally consider simple dipole or split monopole stellar magnetic topologies. Here we consider in addition to a dipolar stellar magnetic field, both quadrupolar and octupolar configurations, while also varying the rotation rate and the magnetic field strength. 60 simulations made with a 2.5D, cylindrical and axisymmetric set-up and computed with the PLUTO code were used to find torque formulations for each topology. We further succeed to give a unique law that fits the data for every topology by formulating the torque in terms of the amount of open magnetic flux in the wind. We also show that our formulation can be applied to even more realistic magnetic topologies, with examples of the Sun in its minimum and maximum phase as observed at the Wilcox Solar Observatory, and of a young K-star (TYC-0486- 4943-1) whose topology has been obtained by Zeeman-Doppler Imaging (ZDI).
17 pages, 13 figures, accepted for publication in ApJ (10/29/2014)
References in corpus (10)
- PLUTO: a Numerical Code for Computational Astrophysics
- Self-consistent Coronal Heating and Solar Wind Acceleration from Anisotropic Magnetohydrodynamic Turbulence
- The surprising magnetic topology of tauSco: fossil remnant or dynamo output?
- Global-Scale Turbulent Convection and Magnetic Dynamo Action in the Solar Envelope
- Stellar magnetism: empirical trends with age and rotation
- Dynamical Simulations of Magnetically Channeled Line-Driven Stellar Winds: III. Angular Momentum Loss and Rotational Spindown
- Magnetic Cycles in a Convective Dynamo Simulation of a Young Solar-type Star
- Accretion-Powered Stellar Winds II: Numerical Solutions for Stellar Wind Torques
- On the diversity of magnetic interactions in close-in star-planet systems
- The Metastable Dynamo Model of Stellar Rotational Evolution
Cited by in corpus (100)
- The Mass-Dependence of Angular Momentum Evolution in Sun-Like Stars
- The active lives of stars: a complete description of rotation and XUV evolution of F, G, K, and M dwarfs
- Improved angular momentum evolution model for solar-like stars II. Exploring the mass dependence
- On differential rotation and overshooting in solar-like stars
- The evolution of surface magnetic fields in young solar-type stars II: The early main sequence (250-650 Myr)
- The Space Weather of Proxima Centauri b
- The evolution of the solar wind
- The Threatening Environment of the TRAPPIST-1 Planets
- Stellar Winds on the Main-Sequence I: Wind Model
- Weakened magnetic braking supported by asteroseismic rotation rates of Kepler dwarfs
- Estimating magnetic filling factors from Zeeman-Doppler magnetograms
- Evolution of LMXBs under Different Magnetic Braking Prescriptions
- Tidal dissipation in rotating low-mass stars and implications for the orbital evolution of close-in planets I. From the PMS to the RGB at solar metallicity
- Powering Stellar Magnetism: Energy Transfers in Cyclic Dynamos of Sun-like Stars
- The Solar-Stellar Connection
- 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
- Do non-dipolar magnetic fields contribute to spin-down torques?
- COCONUT, a novel fast-converging MHD model for solar corona simulations: I. Benchmarking and optimization of polytropic solutions
- The Origin of Weakened Magnetic Braking in Old Solar Analogs
- Evidence for Metallicity-Dependant Spin Evolution in the Kepler field
- The Effect of Combined Magnetic Geometries on Thermally Driven Winds I: Interaction of Dipolar and Quadrupolar Fields
- The fate of close-in planets: tidal or magnetic migration?
- Mean field models of flux transport dynamo and meridional circulation in the Sun and stars
- Magnetic torques on T Tauri stars: accreting vs. non-accreting systems
- Simulating the Space Weather in the AU Mic System: Stellar Winds and Extreme Coronal Mass Ejections
- Global solar magnetic field organization in the outer corona: influence on the solar wind speed and mass flux over the cycle
- Alfvén-wave driven magnetic rotator winds from low-mass stars I: rotation dependences of magnetic braking and mass-loss rate
- Photometric variability as a proxy for magnetic activity and its dependence on metallicity
- Magnetic braking of Sun-like and low-mass stars: Dependence on coronal temperature
- The open flux evolution of a solar-mass star on the main sequence
- Further Evidence of Modified Spin-down in Sun-like Stars: Pileups in the Temperature-Period Distribution
- Magnetic braking of accreting T Tauri stars: Effects of mass accretion rate, rotation, and dipolar field strength
- A semi-empirical model for magnetic braking of solar-type stars
- Origin and evolution of magnetic fields in PMS stars : influence of rotation and structural changes
- Magnetic and tidal migration of close-in planets. Influence of secular evolution on their population
- MESA models with magnetic braking
- Estimating stellar wind parameters from low-resolution magnetograms
- Stellar energetic particles in the magnetically turbulent habitable zones of TRAPPIST-1-like planetary systems
- An Extended and Fragmented Alfvén Zone in the Young Solar Wind
- Direct Detection of Solar Angular Momentum Loss with the Wind Spacecraft
- Magnetic and Rotational Evolution of CrB from Asteroseismology with TESS
- Blocking metal accretion onto population III stars by stellar wind
- Magnetic braking with MESA evolutionary models in the single star and LMXB regimes
- MOVES V. Modelling star-planet magnetic interactions of HD 189733
- Constraints on Magnetic Braking from the G8 Dwarf Stars 61 UMa and Cet
- LBT/PEPSI Spectropolarimetry of a Magnetic Morphology Shift in Old Solar-type Stars
- A Comparison Between Physics-based and Polytropic MHD Models for Stellar Coronae and Stellar Winds of Solar Analogs
- Validation of a wave heated 3D MHD coronal-wind model using Polarized Brightness and EUV observations
- An Earth-like stellar wind environment for Proxima Centauri c
- The winds of young Solar-type stars in the Hyades
- To E or not to E: Numerical Nuances of Global Coronal Models
- Influence of magnetic activity on the determination of stellar parameters through asteroseismology
- Convection and rotation boosted prescription of magnetic braking: application to the formation of extremely low-mass white dwarfs
- The Effect of Magnetic Variability on Stellar Angular Momentum Loss II: The Sun, 61 Cygni A, Eridani, Bootis A and Bootis A
- Modeling Solar Wind Variations over an 11-yr Cycle with Alfvén Wave Dissipation: a Parameter Study
- Breezing through the space environment of Barnard's Star b
- Magnetic Braking of Accreting T Tauri Stars II: Torque Formulation Spanning Spin-Up and Spin-Down Regimes
- Revisiting the space weather environment of Proxima Centauri b
- Eruption and propagation of twisted flux ropes from the base of the solar corona to 1 au
- Hunting for anti-solar differentially rotating stars using the Rossby number -- An application to the Kepler field
- The impact of tidal friction evolution on the orbital decay of ultra-short period planets
- Unraveling the evolution of hot Jupiter systems under the effect of tidal and magnetic interactions and mass loss
- The Contribution of Alpha Particles to the Solar Wind Angular Momentum Flux in the Inner Heliosphere
- Kepler main-sequence solar-like stars: surface rotation and magnetic-activity evolution
- Impact of anti-solar differential rotation in mean-field solar-type dynamos -- Exploring possible magnetic cycles in slowly rotating stars
- On the Evolution of Rotational Modulation Amplitude in Solar-mass Main-sequence Stars
- Constraining Progenitors of Observed LMXBs Using CARB Magnetic Braking
- A model for spin-orbit commensurability and synchronous starspot activity in stars with close-by planets
- Magnetized winds of M-type stars and star-planet magnetic interactions: uncertainties and modeling strategy
- Stellar activity and planetary atmosphere evolution in tight binary star systems
- Exoplanet Radio Transits as a Probe for Exoplanetary Magnetic Fields -- Time-dependent MHD Simulations
- Accounting for Differential Rotation in Calculations of the Sun's Angular Momentum-loss Rate
- TESS asteroseismology of Hydri: a subgiant with a born-again dynamo
- Radio eclipses of exoplanets by the winds of their host stars
- What governs the spin distribution of very young < 1 Myr low mass stars
- Tidal excitation of autoresonant oscillations in stars with close-by planets
- Effect of Differential Rotation on Magnetic Braking of Low-Mass and Solar-Like Stars: A Proof-of-Concept Study
- Rotational evolution of young-to-old stars with data-driven three-dimensional wind models
- Brightness Fluctuation Spectra of Sun-Like Stars. I. The Mid-Frequency Continuum
- Migrating Dynamo Waves and Consequences for Stellar Current Sheets
- Tidally-induced migration of TESS gas giants orbiting M dwarfs
- Is planetary inward migration responsible for GJ 504's fast rotation and bright X-ray luminosity? New constraints from eROSITA
- 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
- Anomalous orbital expansion of low-mass X-ray binary 2A 1822-371: the existence of a circumbinary disk?
- Magnetic braking below the cataclysmic variable period gap and the observed dearth of period bouncers
- Convective dynamos of black widow companions
- A modest change in magnetic braking at the fully convective boundary explains cataclysmic variable evolution
- The effect of turbulence on the angular momentum of the solar wind
- Magnetic braking and dynamo evolution of Hydri
- Do accretion-powered stellar winds help spin down T Tauri stars?
- Reconstructing the Sun's Alfvén surface and wind braking torque with Parker Solar Probe
- Large-scale structures in the stellar wind of fast-rotating stars spawned by the presence of Earth-like planets
- Comment on "The Sun is less active than other solar-like stars"
- On the origin of the rotation of massive stars
- Testing the Alfvén-wave model of the solar wind with interplanetary scintillation
- The winds of young Solar-type stars in Coma Berenices and Hercules-Lyra
- Mechanisms for magnetic braking boost and disruption: the role of irradiation-driven winds and convective turnover time spike in cataclysmic variables
- Zeeman Doppler Imaging of Ceti: The Weakest Magnetic Field Detected in a Sun-like Star