2026/07/16 by Heather B. Hewitt, Mikaela Chamlee, Trinity Hockman +45
Physics and Astronomy · #astro-ph.EP
We present updated transit timing measurements for three hot Jupiters (Qatar-4 b, HAT-P-18 b, and CoRoT-1 b) by leveraging data collected from the MicroObservatory Telescope Network, a network of small, robotic ground-based telescopes, and the NASA Transiting Exoplanet Survey Satellite (TESS). By combining these data with archival published results, we present the most precise orbital solutions to date for all three systems, allowing for precise transit time predictions for future missions. We report an updated mid-transit time for Qatar-4 b of 2458919.5838 ± 0.000089 BJDTDB and an updated orbital period of 1.80536560 ± 0.00000021 days. For HAT-P-18 b, we find a mid-transit time of 2459743.85340 ± 0.000022 BJDTDB and an updated orbital period of 5.50802957 ± 0.00000012 days. For CoRoT-1 b, we report a mid-transit time of 2456268.99083 ± 0.000099 BJDTDB and an updated orbital period of 1.50896846 ± 0.000000071 days. Our results demonstrate improvements over recently published ephemerides, with reductions of 36.4%, 4.35%, and 17.5% in mid-transit time uncertainties and 65.0%, 77.4%, and 16.9% in orbital period uncertainties for Qatar-4 b, HAT-P-18 b, and CoRoT-1 b, respectively. The results of this study improve the precision of future transit predictions and demonstrate the value of coordinated small-telescope monitoring (and citizen science initiatives) when updating the orbital parameters of hot Jupiters.