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Related papers: Revisiting the Kepler field with TESS: Improved ep…

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The Transiting Exoplanet Survey Satellite (TESS) is focusing on relatively bright stars and has found thousands of planet candidates. However, mainly because of the low spatial resolution of its cameras ($\approx$ 21 arcsec/pixel), TESS is…

The discovery of young (<800 Myr) transiting planets has provided a new avenue to explore how planets form and evolve over their lifetimes. Mass measurements for these planets would be invaluable, but radial velocity surveys of young…

Earth and Planetary Astrophysics · Physics 2025-12-09 Ana Isabel Lopez Murillo , Andrew W. Mann , Madyson G. Barber , Andrew Vanderburg , Pa Chia Thao , Andrew W. Boyle

Accurately and rapidly classifying exoplanet candidates from transit surveys is a goal of growing importance as the data rates from space-based survey missions increases. This is especially true for NASA's TESS mission which generates…

Data from the Kepler space telescope have led to the discovery of thousands of planet candidates. Most of these candidates are likely to be real exoplanets, but a significant number of false positives still contaminate the sample,…

Earth and Planetary Astrophysics · Physics 2024-05-08 Drake A. Lehmann , Andrew Vanderburg

The Transit Ephemeris Refinement and Monitoring Survey (TERMS) conducts radial velocity and photometric monitoring of known exoplanets in order to refine planetary orbits and predictions of possible transit times. This effort is primarily…

We present an analysis of 18 short-cadence (SC) transit lightcurves of TrES-2b using quarter 0 (Q0) and quarter 1 (Q1) from the Kepler Mission. The photometry is of unprecedented precision, 237ppm per minute, allowing for the most accurate…

Earth and Planetary Astrophysics · Physics 2015-05-19 David M. Kipping , Gáspár Á. Bakos

In this paper we reanalyze the extended ETV curves of the formerly identified triple star candidates and many other $Kepler$ EBs. Besides the confirmations of the former findings and/or the improvements of the triple systems' orbital…

Solar and Stellar Astrophysics · Physics 2025-03-19 T. Borkovits , S. A. Rappaport , T. Mitnyan , I. B. Bíró , I. Csányi , E. Forgács-Dajka , A. Forró , T. Hajdu , B. Seli , J. Sztakovics , A. Göblyös , A. Pál

The ExoClock project has been created with the aim of increasing the efficiency of the Ariel mission. It will achieve this by continuously monitoring and updating the ephemerides of Ariel candidates over an extended period, in order to…

Earth and Planetary Astrophysics · Physics 2023-02-22 A. Kokori , A. Tsiaras , B. Edwards , A. Jones , G. Pantelidou , G. Tinetti , L. Bewersdorff , A. Iliadou , Y. Jongen , G. Lekkas , A. Nastasi , E. Poultourtzidis , C. Sidiropoulos , F. Walter , A. Wünsche , R. Abraham , V. K. Agnihotri , R. Albanesi , E. Arce-Mansego , D. Arnot , M. Audejean , C. Aumasson , M. Bachschmidt , G. Baj , P. R. Barroy , A. A. Belinski , D. Bennett , P. Benni , K. Bernacki , L. Betti , A. Biagini , P. Bosch , P. Brandebourg , L. Brát , M. Bretton , S. M. Brincat , S. Brouillard , A. Bruzas , A. Bruzzone , R. A. Buckland , M. Caló , F. Campos , A. Carreno , J. -A. Carrion Rodrigo , R. Casali , G. Casalnuovo , M. Cataneo , C. -M. Chang , L. Changeat , V. Chowdhury , R. Ciantini , M. Cilluffo , J. -F. Coliac , G. Conzo , M. Correa , G. Coulon , N. Crouzet , M. V. Crow , I. Curtis , D. Daniel , S. Dawes , B. Dauchet , M. Deldem , D. Deligeorgopoulos , G. Dransfield , R. Dymock , T. Eenmäe , P. Evans , N. Esseiva , C. Falco , R. G. Farfán , E. Fernández-Lajús , S. Ferratfiat , S. L. Ferreira , A. Ferretti , J. Fiołka , M. Fowler , S. R. Futcher , D. Gabellini , T. Gainey , J. Gaitan , P. Gajdoš , A. García-Sánchez , J. Garlitz , C. Gillier , C. Gison , F. Grau Horta , G. Grivas , J. Gonzales , D. Gorshanov , P. Guerra , T. Guillot , C. A. Haswell , T. Haymes , V. -P. Hentunen , K. Hills , K. Hose , T. Humbert , F. Hurter , T. Hynek , M. Irzyk , J. Jacobsen , A. L. Jannetta , K. Johnson , P. Jóźwik-Wabik , A. E. Kaeouach , W. Kang , H. Kiiskinen , T. Kim , Ü. Kivila , B. Koch , U. Kolb , H. Kučáková , S. -P. Lai , D. Laloum , S. Lasota , L. A. Lewis , G. -I. Liakos , F. Libotte , C. Lopresti , F. Lomoz , R. Majewski , A. Malcher , M. Mallonn , M. Mannucci , A. Marchini , J. -M. Mari , A. Marino , G. Marino , J. -C. Mario , J. -B. Marquette , F. A. Martínez-Bravo , M. Mašek , P. Matassa , P. Michel , J. Michelet , M. Miller , E. Miny , T. Mollier , D. Molina , B. Monteleone , N. Montigiani , M. Morales-Aimar , F. Mortari , M. Morvan , L. V. Mugnai , G. Murawski , L. Naponiello , R. Naves , J. -L. Naudin , D. Néel , R. Neito , S. Neveu , A. Noschese , Y. Öğmen , O. Ohshima , Z. Orbanic , E. P. Pace , C. Pantacchini , N. I. Paschalis , C. Pereira , I. Peretto , V. Perroud , M. Phillips , P. Pintr , J. -B. Pioppa , J. Plazas , A. J. Poelarends , A. Popowicz , J. Purcell , N. Quinn , M. Raetz , D. Rees , F. Regembal , M. Rocchetto , P. -F. Rocci , M. Rockenbauer , R. Roth , L. Rousselot , X. Rubia , N. Ruocco , E. Russo , M. Salisbury , F. Salvaggio , A. Santos , J. Savage , F. Scaggiante , D. Sedita , S. Shadick , A. F. Silva , N. Sioulas , V. Školník , M. Smith , M. Smolka , A. Solmaz , N. Stanbury , D. Stouraitis , T. -G. Tan , M. Theusner , G. Thurston , F. -P. Tifner , A. Tomacelli , A. Tomatis , J. Trnka , M. Tylšar , P. Valeau , J. -P. Vignes , A. Villa , A. Vives Sureda , K. Vora , M. Vrašťák , D. Walliang , B. Wenzel , D. E. Wright , R. Zambelli , M. Zhang , M. Zíbar

We consider the potential for the Transiting Exoplanet Survey Satellite (TESS) to detect transit timing variations (TTVs) during both its nominal and extended mission phases. Building on previous estimates of the overall yield of planetary…

Earth and Planetary Astrophysics · Physics 2019-10-02 Sam Hadden , Thomas Barclay , Matthew J. Payne , Matthew J. Holman

Nearly continuous, densely sampled, space-based photometry allows us to recover the finest details in the light variations of stars. The number of such light curves have been increasing rapidly in the last few years thanks to the extended…

Solar and Stellar Astrophysics · Physics 2023-12-18 E. Plachy

Multi-planet systems are a perfect laboratory for constraining planetary formation models. A few of these systems present planets that come very close to mean motion resonance, potentially leading to significant transit-timing variations…

Earth and Planetary Astrophysics · Physics 2024-06-27 H. G. Vivien , S. Hoyer , M. Deleuil , S. Sulis , A. Santerne , J. L. Christiansen , K. K. Hardegree-Ullman , T. A. Lopez

We present a comprehensive study of phase curves and secondary eclipses in the Kepler data set using all data from 16 quarters that were available in 2013-2014. Our sample consists of 20 confirmed planets with R_p > 4 R_e ,P < 10d, V_mag <…

Solar and Stellar Astrophysics · Physics 2015-11-18 Daniel Angerhausen , Emily DeLarme , Jon A. Morse

The architectures of multiple planet systems can provide valuable constraints on models of planet formation, including orbital migration, and excitation of orbital eccentricities and inclinations. NASA's Kepler mission has identified 1235…

Transit timing variations provide a powerful tool for confirming and characterizing transiting planets, as well as detecting non-transiting planets. We report the results an updated TTV analysis for 1481 planet candidates (Borucki et al.…

K2-2 b/HIP 116454 b, the first exoplanet discovery by K2 during its Two-Wheeled Concept Engineering Test, is a sub-Neptune (2.5 $\pm$ 0.1 $R_\oplus$, 9.7 $\pm$ 1.2 $M_\oplus$) orbiting a relatively bright (KS = 8.03) K-dwarf on a 9.1 day…

The unprecedented photometric precision of Kepler mission allows searching for Earth-like planets. However, it remains difficult to distinguish these low signal-to-noise planets from the false alarms originating from correlated and…

Earth and Planetary Astrophysics · Physics 2025-08-26 Oryna Ivashtenko , Barak Zackay

New insights on stellar evolution and stellar interiors physics are being made possible by asteroseismology. Throughout the course of the Kepler mission, asteroseismology has also played an important role in the characterization of…

Photometric surveys such as Kepler have the precision to identify exoplanet and eclipsing binary candidates from only a single transit. K2, with its 75d campaign duration, is ideally suited to detect significant numbers of single-eclipsing…

We present and discuss five candidate exoplanetary systems identified with the Kepler spacecraft. These five systems show transits from multiple exoplanet candidates. Should these objects prove to be planetary in nature, then these five…