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Hawthorn, Faith; Gill, Sam; Bayliss, Daniel; Osborn, Hugh P; Pelisoli, Ingrid; Rodel, Toby; Smith Darnbrook, Kaylen; Wheatley, Peter J; Anderson, David R; Apergis, Ioannis; Battley, Matthew P; Burleigh, Matthew R; Casewell, Sarah L; Eigmüller, Philipp; Günther, Maximilian N; Jenkins, James S; Lendl, Monika; Moyano, Maximiliano; Osborn, Ares; Ramsay, Gavin; Ulmer-Moll, Solène; Vines, Jose I; West, Richard
Monthly notices of the Royal Astronomical Society, 01/2024, Letnik: 528, Številka: 2Journal Article
ABSTRACT Discovering transiting exoplanets with long orbital periods allows us to study warm and cool planetary systems with temperatures similar to the planets in our own Solar system. The Transiting Exoplanet Survey Satellite (TESS) mission has photometrically surveyed the entire Southern Ecliptic Hemisphere in Cycle 1 (2018 August–2019 July), Cycle 3 (2020 July–2021 June), and Cycle 5 (2022 September–2023 September). We use the observations from Cycle 1 and Cycle 3 to search for exoplanet systems that show a single transit event in each year, which we call duotransits. The periods of these planet candidates are typically in excess of 20 d, with the lower limit determined by the duration of individual TESS observations. We find 85 duotransit candidates, which span a range of host star brightnesses: 8 < Tmag < 14, transit depths between 0.1 per cent and 1.8 per cent, and transit durations between 2 and 10 h with the upper limit determined by our normalization function. Of these candidates, 25 are already known, and 60 are new. We present these candidates along with the status of photometric and spectroscopic follow-up.
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JCR | SNIP | JCR | SNIP | JCR | SNIP | JCR | SNIP |
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in: SICRIS
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