Analysis of the Most Precise Light Curves of HAT-P-36 Detrended From Spot Signals
Sel\c{c}uk Yal\c{c}{\i}nkaya, \"Ozg\"ur Ba\c{s}t\"urk, Fadel El, Helweh, Ekrem Murat Esmer, Onur Y\"or\"uko\u{g}lu, Mesut Y{\i}lmaz, Hakan, Volkan \c{S}enavc{\i}, Tolgahan K{\i}l{\i}\c{c}o\u{g}lu, Selim Osman Selam

TL;DR
This study presents the most precise ground and space-based light curves of HAT-P-36, analyzing transit timing variations and stellar activity, revealing an increasing orbital period contrary to expectations of decay.
Contribution
It provides a comprehensive analysis combining new ground-based and space-based data, refining system parameters, and investigating TTVs and stellar variability of HAT-P-36 b with novel detrending and modeling techniques.
Findings
Detected an orbital period increase of 0.014 s/year.
Refined system parameters using combined data sources.
Identified a potential stellar rotation period of 4.22 days.
Abstract
We study the most precise light curves of the planet-host HAT-P-36 that we obtained from the ground primarily with a brand-new 80 cm telescope very recently installed at Ankara University Kreiken Observatory of Turkey and also from the space with Transiting Exoplanet Survey Satellite. The main objective of the study is to analyze the Transit Timing Variations (TTV) observed in the hot-Jupiter type planet HAT-P-36 b, a strong candidate for orbital decay, based on our own observations as well as that have been acquired by professional and amateur observers since its discovery. HAT-P-36 displays out-of-transit variability as well as light curve anomalies during the transits of its planet due to stellar spots. We collected and detrended all the complete transit light curves we had access to from these anomalies, which we modeled with EXOFAST and measured the mid-transit times forming a…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomical Observations and Instrumentation · Astronomy and Astrophysical Research
