Transiting Exoplanets from Sharjah Astronomical Observatory (SAO-M47): The Exoplanet HAT-P-25b Using L and V Filters
Mohammad F. Talafha, Mashhoor A. Al-Wardat, Ammar E. M. Abdulla, Hamid M. Al-Naimiy

TL;DR
This study compares exoplanet HAT-P-25b observations using L and V filters at SAO, revealing size variations likely due to atmospheric effects, and employs the TRASCA model for transit depth analysis.
Contribution
It introduces a comparative analysis of exoplanet transit observations with different filters, highlighting filter-dependent size variations and applying the TRASCA model for transit depth determination.
Findings
L filter shows larger exoplanet size than V filter.
Transit depths differ between filters, with L filter showing greater depth.
Results suggest atmospheric influence on observed transit characteristics.
Abstract
In this study, we conduct a comparative analysis of observations carried out on the exoplanet HAT-P-25 b at the Sharjah Astronomical Observatory (SAO). We have employed two distinct filters, namely, the Luminoso (L) and Visual (V) filters. Our research aims to discern any variations in transit depth or exoplanet size resulting from the use of these different filters. The primary focus of this study is to determine the exoplanet's size relative to its host star using the transit method. The application of different filters was expected to introduce subtle variations in size, influenced by factors such as the exoplanet's atmosphere. Notably, our findings reveal that the exoplanet's size appears larger when observed through the L filter compared to the V filter. Throughout the analytical process, we employed the TRASCA model to determine the transit depth for each epoch. Fixed parameters,…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Scientific Research and Discoveries
