A Review of the Mixing Length Theory of Convection in 1D Stellar Modeling

Author:

Joyce Meridith12ORCID,Tayar Jamie3ORCID

Affiliation:

1. Konkoly Observatory, Research Centre for Astronomy and Earth Sciences, Konkoly Th. M. út 15-17., H-1121 Budapest, Hungary

2. CSFK, MTA Centre of Excellence, Konkoly Thege Miklós út 15-17., H-1121 Budapest, Hungary

3. Department of Astronomy, University of Florida, Gainesville, FL 32611, USA

Abstract

We review the application of the one-dimensional Mixing Length Theory (MLT) model of convection in stellar interiors and low-mass stellar evolution. We summarize the history of MLT, present a derivation of MLT in the context of 1D stellar structure equations, and discuss the physical regimes in which MLT is relevant. We review attempts to improve and extend the formalism, including to higher dimensions. We discuss the interactions of MLT with other modeling physics, and demonstrate the impact of introducing variations in the convective mixing length, αMLT, on stellar tracks and isochrones. We summarize the process of performing a solar calibration of αMLT and state-of-the-art on calibrations to non-solar targets. We discuss the scientific implications of changing the mixing length, using recent analyses for demonstration. We review the most prominent successes of MLT, and the remaining challenges, and we conclude by speculating on the future of this treatment of convection.

Funder

Measuring Ages Through Isochrones, Seismology, and Stellar Evolution

European Union’s Horizon 2020 research

NASA

Probes of Transport in Stars

Publisher

MDPI AG

Subject

Astronomy and Astrophysics

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