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Original Research By Young Twinkle Students (ORBYTS): Ephemeris Refinement of Transiting Exoplanets III

Authors :
Edwards, Billy
Ho, Cynthia S. K.
Osborne, Hannah L. M.
Deen, Nabeeha
Hathorn, Ellie
Johnson, Solomon
Patel, Jiya
Vogireddy, Varun
Waddon, Ansh
Ahmed, Ayuub
Bham, Muhammad
Campbell, Nathan
Chummun, Zahra
Crossley, Nicholas
Dunsdon, Reggie
Hayes, Robert
Malik, Haroon
Marsden, Frank
Mayfield, Lois
Mitchell, Liston
Prosser, Agnes
Rabrenovic, Valentina
Smith, Emma
Thomas, Rico
Kokori, Anastasia
Tsiaras, Angelos
Tessenyi, Marcell
Tinetti, Giovanna
Tennyson, Jonathan
Edwards, Billy
Ho, Cynthia S. K.
Osborne, Hannah L. M.
Deen, Nabeeha
Hathorn, Ellie
Johnson, Solomon
Patel, Jiya
Vogireddy, Varun
Waddon, Ansh
Ahmed, Ayuub
Bham, Muhammad
Campbell, Nathan
Chummun, Zahra
Crossley, Nicholas
Dunsdon, Reggie
Hayes, Robert
Malik, Haroon
Marsden, Frank
Mayfield, Lois
Mitchell, Liston
Prosser, Agnes
Rabrenovic, Valentina
Smith, Emma
Thomas, Rico
Kokori, Anastasia
Tsiaras, Angelos
Tessenyi, Marcell
Tinetti, Giovanna
Tennyson, Jonathan
Publication Year :
2021

Abstract

We report photometric follow-up observations of thirteen exoplanets (HATS-1 b, HATS2 b, HATS-3 b, HAT-P-18 b, HAT-P-27 b, HAT-P-30 b, HAT-P-55 b, KELT-4A b, WASP-25 b, WASP-42 b, WASP-57 b, WASP-61 b and WASP-123 b), as part of the Original Research By Young Twinkle Students (ORBYTS) programme. All these planets are potentially viable targets for atmospheric characterisation and our data, which were taken using the LCOGT network of ground-based telescopes, will be combined with observations from other users of ExoClock to ensure that the transit times of these planets continue to be well-known, far into the future.<br />Comment: Accepted for publication in the Astronomy Theory, Observations and Methods Journal. Secondary school students (16-17 y/o) performed the majority of the analysis, as well as writing much of the paper, as part of the ORBYTS programme

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1312091976
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.32374.atom.2020.2.4