A differentiable N-body code for transit timing and dynamical modelling -- II. Photodynamics
arXiv:2410.03874 · doi:10.1093/mnras/staf687
Abstract
Exoplanet transits contain substantial information about the architecture of a system. By fitting transit light curves we can extract dynamical parameters and place constraints on the properties of the planets and their host star. Having a well-defined probabilistic model plays a crucial role in making robust measurements of these parameters, and the ability to differentiate the model provides access to more robust inference tools. Gradient-based inference methods can allow for more rapid and accurate sampling of high-dimensional parameter spaces. We present a fully differentiable photodynamical model for multiplanet transit light curves that display transit timing variations. We model time-integrated exposures, compute the dynamics of a system over the full length of observations, and provide analytic expressions for derivatives of the flux with respect to the dynamical and photometric model parameters. The model has been implemented in the Julia language and is available open-source on GitHub. We demonstrate with a simulated data set that Bayesian inference with the NUTS HMC algorithm, which uses the model gradient, can outperform the affine invariant (e.g. emcee) MCMC algorithm in CPU time per effective sample, and we find that the relative sampling efficiency improves with the number of model parameters.
22 pages, 13 figures, 3 tables. Corrected version of the accepted manuscript. Published in Monthly Notices of the Royal Astronomical Society. Software package at: https://github.com/langfzac/Photodynamics.jl
References in corpus (56)
- emcee: The MCMC Hammer
- The Transiting Exoplanet Survey Satellite
- Analytic Lightcurves for Planetary Transit Searches
- The K2 Mission: Characterization and Early results
- Rank-normalization, folding, and localization: An improved for assessing convergence of MCMC
- The PLATO 2.0 Mission
- batman: BAsic Transit Model cAlculatioN in Python
- The Occurrence and Architecture of Exoplanetary Systems
- On the Unique Solution of Planet and Star Parameters from an Extrasolar Planet Transit Light Curve
- DHP Framework: Digital Health Passports Using Blockchain -- Use case on international tourism during the COVID-19 pandemic
- On detecting terrestrial planets with timing of giant planet transits
- The CoRoT satellite in flight : description and performance
- Kepler-16: A Transiting Circumbinary Planet
- EXOFAST: A fast exoplanetary fitting suite in IDL
- Architecture of Kepler's Multi-transiting Systems: II. New investigations with twice as many candidates
- Kepler-36: A Pair of Planets with Neighboring Orbits and Dissimilar Densities
- Juliet: a versatile modelling tool for transiting and non-transiting exoplanetary systems
- Stellar Spin-Orbit Misalignment in a Multiplanet System
- Binning is sinning: morphological light-curve distortions due to finite integration time
- KOI-126: A Triply-Eclipsing Hierarchical Triple with Two Low-Mass Stars
- PyTransit: Fast and Easy Exoplanet Transit Modelling in Python
- A resonant chain of four transiting, sub-Neptune planets
- exoplanet: Gradient-based probabilistic inference for exoplanet data & other astronomical time series
- The Neptune-Sized Circumbinary Planet Kepler-38b
- TTVFast: An efficient and accurate code for transit timing inversion problems
- Analytic Planetary Transit Light Curves and Derivatives for Stars with Polynomial Limb Darkening
- ELLC - a fast, flexible light curve model for detached eclipsing binary stars and transiting exoplanets
- Transit Analysis Package (TAP and autoKep): IDL Graphical User Interfaces for Extrasolar Planet Transit Photometry
- Pyaneti: a fast and powerful software suite for multi-planet radial velocity and transit fitting
- Secular dynamics of hierarchical multiple systems composed of nested binaries, with an arbitrary number of bodies and arbitrary hierarchical structure. First applications to multiplanet and multistar systems
- Light curve modelling for mutual transits
- Transit timing to first order in eccentricity
- Analysis of a JWST NIRSpec Lab Time Series: Characterizing Systematics, Recovering Exoplanet Transit Spectroscopy, and Constraining a Noise Floor
- Dynamical masses, absolute radii and 3D orbits of the triply eclipsing star HD 181068 from Kepler photometry
- High-precision photometry by telescope defocussing. IV. Confirmation of the huge radius of WASP-17b
- Photo-dynamical mass determination of the multi-planetary system K2-19
- Planet-Planet Occultations in TRAPPIST-1 and Other Exoplanet Systems
- Photodynamical analysis of the triply eclipsing hierarchical triple system EPIC 249432662
- A dynamical analysis of the Kepler-11 planetary system
- LUNA: An algorithm for generating dynamic planet-moon transits
- The Compact Triply Eclipsing Triple Star TIC 209409435 Discovered with TESS
- JWST Noise Floor II: Systematic Error Sources in JWST NIRCam Time Series
- TOI-1130: A photodynamical analysis of a hot Jupiter in resonance with an inner low-mass planet
- Absolute densities in exoplanetary systems: photodynamical modelling of Kepler-138
- Absolute masses and radii determination in multiplanetary systems without stellar models
- Unbiasing the density of TTV-characterised sub-Neptunes: Update of the mass-radius relationship of 34 Kepler planets
- Kepler Object of Interest Network II. Photodynamical modelling of Kepler-9 over 8 years of transit observations
- Accurate Computation of Light Curves and the Rossiter-McLaughlin Effect in Multi-Body Eclipsing Systems
- A Simplified Photodynamical Model for Planetary Mass Determination in Low-Eccentricity Multi-Transiting Systems
- Going back to basics: accelerating exoplanet transit modelling using Taylor-series expansion of the orbital motion
- A differentiable N-body code for transit timing and dynamical modeling. I. Algorithm and derivatives
- KIC 7955301: a hierarchical triple system with eclipse timing variations and an oscillating red giant
- Analytic Light Curve for Mutual Transits of Two Bodies Across a Limb-darkened Star
- Photodynamical Modeling of the Fascinating Eclipses in the Triple-Star System KOI-126
- An Accurate 3D Analytic Model for Exoplanetary Photometry, Radial Velocity, and Astrometry
- The Efficiency of Geometric Samplers for Exoplanet Transit Timing Variation Models