EXOFASTv2: A public, generalized, publication-quality exoplanet modeling code
Jason D. Eastman, Joseph E. Rodriguez, Eric Agol, Keivan G. Stassun,, Thomas G. Beatty, Andrew Vanderburg, B. Scott Gaudi, Karen A. Collins,, Rodrigo Luger

TL;DR
EXOFASTv2 is a comprehensive, open-source software for modeling exoplanet systems that integrates multiple data types, models stellar properties, and improves computational speed and accuracy, aiding both research and education.
Contribution
It introduces a versatile, publicly available exoplanet fitting tool capable of handling complex multi-planet systems with improved modeling techniques and user-friendly features.
Findings
Supports arbitrary number of planets and data types
Models stellar properties using Gaia parallaxes and catalog photometry
Provides a faster, more accurate transit model
Abstract
We present the next generation public exoplanet fitting software, EXOFASTv2. It is capable of fitting an arbitrary number of planets, radial velocity data sets, astrometric data sets, and/or transits observed with any combination of wavelengths. We model the star simultaneously in the fit and provide several state-of-the-art ways to constrain its properties, including taking advantage of the now-ubiquitous all-sky catalog photometry and Gaia parallaxes. EXOFASTv2 can model the star by itself, too. Multi-planet systems are modeled self-consistently with the same underlying stellar mass that defines their semi-major axes through Kepler's law and the planetary period. Transit timing, duration, and depth variations can be modeled with a simple command line option. We explain our methodology and rationale as well as provide an improved version of the core transit model that is both 25\%…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Astronomical Observations and Instrumentation
