A Method of Rapidly Deriving Late-type Contact Binary Parameters and Its Application in the Catalina Sky Survey
arXiv:2408.04896 · doi:10.3847/1538-4365/ad5953
Abstract
With the continuous development of large optical surveys, a large number of light curves of late-type contact binary systems (CBs) have been released. Deriving parameters for CBs using the the WD program and the PHOEBE program poses a challenge. Therefore, this study developed a method for rapidly deriving light curves based on the Neural Networks (NN) model combined with the Hamiltonian Monte Carlo (HMC) algorithm (NNHMC). The neural network was employed to establish the mapping relationship between the parameters and the pregenerated light curves by the PHOEBE program, and the HMC algorithm was used to obtain the posterior distribution of the parameters. The NNHMC method was applied to a large contact binary sample from the Catalina Sky Survey, and a total of 19,104 late-type contact binary parameters were derived. Among them, 5172 have an inclination greater than 70 deg and a temperature difference less than 400 K. The obtained results were compared with the previous studies for 30 CBs, and there was an essentially consistent goodness-of-fit (R2) distribution between them. The NNHMC method possesses the capability to simultaneously derive parameters for a vast number of targets. Furthermore, it can provide an extremely efficient tool for rapid derivation of parameters in future sky surveys involving large samples of CBs.
References in corpus (11)
- The Catalina Surveys Periodic Variable Star Catalog
- Physics Of Eclipsing Binaries. II. Towards the Increased Model Fidelity
- emcee v3: A Python ensemble sampling toolkit for affine-invariant MCMC
- Statistics of 700 individually studied W UMa stars
- Artificial Intelligence Approach to the Determination of Physical Properties of Eclipsing Binaries. I. The EBAI Project
- Contact binaries at the short period cut-off I. statistics and the first photometric investigations of ten totally eclipsing systems
- New low mass ratio contact binaries in the Catalina Sky Survey
- Investigation of the Orbital Period and Mass Relations for W UMa-type Contact Systems
- Contact Binaries as Viable Distance Indicators: New, Competitive (V)JHKs Period-Luminosity Relations
- Case AD, AR, and AS binary evolution and their possible connections with W UMa binaries
- A Study of Twelve Potential Merger Candidate Contact Binary Systems