Analytic, dust-independent mass-loss rates for red supergiant winds initiated by turbulent pressure
arXiv:2101.03070 · doi:10.1051/0004-6361/202039224
Abstract
Context. Red supergiants are observed to undergo vigorous mass-loss. However, to date, no theoretical model has succeeded in explaining the origins of these objects' winds. This strongly limits our understanding of red supergiant evolution and Type II-P and II-L supernova progenitor properties. Aims. We examine the role that vigorous atmospheric turbulence may play in initiating and determining the mass-loss rates of red supergiant stars. Methods. We analytically and numerically solve the equations of conservation of mass and momentum, which we later couple to an atmospheric temperature structure, to obtain theoretically motivated mass-loss rates. We then compare these to state-of-the-art empirical mass-loss rate scaling formulae as well as observationally inferred mass-loss rates of red supergiants. Results. We find that the pressure due to the characteristic turbulent velocities inferred for red supergiants is sufficient to explain the mass-loss rates of these objects in the absence of the normally employed opacity from circumstellar dust. Motivated by this initial success, we provide a first theoretical and fully analytic mass-loss rate prescription for red supergiants. We conclude by highlighting some intriguing possible implications of these rates for future studies of stellar evolution, especially in light of the lack of a direct dependence on metallicity.
14 pages, 9 figures, 2 tables
References in corpus (14)
- Modules for Experiments in Stellar Astrophysics (MESA)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- The empirical metallicity dependence of the mass-loss rate of O- and early B-type stars
- A new mass-loss rate prescription for red supergiants
- Probing the mass-loss history of AGB and red supergiant stars from CO rotational line profiles I. Theoretical model -- Mass-loss history unravelled in VY CMa
- The dust condensation sequence in red super-giant stars
- Atmospheric dynamics and the mass loss process in red supergiant stars
- Exploring wind-driving dust species in cool luminous giants I. Basic criteria and dynamical models of M-type AGB stars
- What causes the large extensions of red-supergiant atmospheres? Comparisons of interferometric observations with 1-D hydrostatic, 3-D convection, and 1-D pulsating model atmospheres
- Dynamical Opacity-Sampling Models of Mira Variables. I: Modelling Description and Analysis of Approximations
- Vigorous atmospheric motion in the red supergiant star Antares
- ALMA and VLA reveal the lukewarm chromospheres of the nearby red supergiants Antares and Betelgeuse
- A hydrodynamic study of the circumstellar envelope of alpha Scorpii
Cited by in corpus (37)
- Theory and Diagnostics of Hot Star Mass Loss
- Early Spectroscopy and Dense Circumstellar Medium Interaction in SN 2023ixf
- Evolution and Mass Loss of Cool Ageing Stars: a Daedalean Story
- Evolved Massive Stars at Low-metallicity V. Mass-Loss Rate of Red Supergiant Stars in the Small Magellanic Cloud
- A synthetic population of Wolf-Rayet stars in the LMC based on detailed single and binary star evolution models
- The Time-Averaged Mass-Loss Rates of Red Supergiants As Revealed by their Luminosity Functions in M31 and M33
- ALMA detection of CO rotational line emission in red supergiant stars of the massive young star cluster RSGC1 -- Determination of a new mass-loss rate prescription for red supergiants
- Establishing a mass-loss rate relation for red supergiants in the Large Magellanic Cloud
- A Study of Primordial Very Massive Star Evolution
- On the Red Supergiant Wind Kink. A Universal mass-loss concept for massive stars
- The impact of realistic red supergiant mass-loss on stellar evolution
- An absence of binary companions to Wolf-Rayet stars in the Small Magellanic Cloud: implications for mass loss and black hole masses at low metallicity
- Is Betelgeuse Really Rotating? Synthetic ALMA Observations of Large-scale Convection in 3D Simulations of Red Supergiants
- The effect of mass loss in models of red supergiants in the Small Magellanic Cloud
- Red Supergiant Mass Loss and Mass-Loss Rates
- The VLT/SPHERE view of the ATOMIUM cool evolved star sample. I. Overview: Sample characterization through polarization analysis
- The landscape of binary core-collapse supernova progenitors and the late emergence of Wolf-Rayet winds
- Evolution of rotating massive stars adopting a newer, self-consistent wind prescription at SMC metallicity
- The Demographics of Binary Companions to Stripped-Envelope Supernovae: Confronting Observations with Population Synthesis
- History of two mass loss processes in VY CMa. Fast outflows carving older ejecta
- The Extremely Metal-Poor SN 2023ufx: A Local Analog to High-Redshift Type II Supernovae
- Bringing Stellar Evolution & Feedback Together: Summary of proposals from the Lorentz Center Workshop, 2022
- Investigating the metallicity dependence of the mass-loss rate relation of red supergiants
- Investigating episodic mass loss in evolved massive stars: II. Physical properties of red supergiants at subsolar metallicity
- The dusty circumstellar environment of Betelgeuse during the Great Dimming as seen by VLTI/MATISSE
- The effect of winds on atmospheric layers of red supergiants I. Modelling for interferometric observations
- The effect of winds on atmospheric layers of red supergiants II. Modelling VLTI/GRAVITY and MATISSE observations of AH Sco, KW Sgr, V602 Car, CK Car and V460 Car
- The drastic impact of Eddington-limit induced mass ejections on massive star populations
- Investigating episodic mass loss in evolved massive stars: III. Spectroscopy of dusty massive stars in three northern galaxies
- TODDLERS: A New UV to Millimeter Emission Library for Star-Forming Regions. II. Star Formation Rate Indicators Using Auriga Zoom Simulations
- The demographics of core-collapse supernovae. The role of binary evolution and CSM interaction
- A constant upper luminosity limit of cool supergiant stars down to the extremely low metallicity of I Zw 18
- Mass loading of outflows from evolving Young Massive Clusters
- Explosions of pulsating red supergiants: a natural pathway for the diversity of Type II-P/L supernovae
- Revisiting the Evolutionary Status of Massive Stars at the central parsec of the Milky Way
- Progenitor and Close-In Circumstellar Medium of Type II Supernova 2020fqv from High-Cadence Photometry and Ultra-Rapid UV Spectroscopy
- The extreme scarcity of dust-enshrouded red supergiants: consequences for producing stripped stars via winds