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

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We examine the ability of the Transiting Exoplanet Survey Satellite (TESS) to detect and improve our understanding of planetary systems in the Kepler field. By modeling the expected transits of all confirmed and candidate planets detected…

Earth and Planetary Astrophysics · Physics 2019-05-29 Callista N. Christ , Benjamin T. Montet , Daniel C. Fabrycky

In this paper we investigate systems previously identified to exhibit transit timing variations (TTVs) in Kepler data, with the goal of predicting the expected improvements to the mass and eccentricity constraints that will arise from…

Earth and Planetary Astrophysics · Physics 2019-03-20 Max Goldberg , Sam Hadden , Matthew J. Payne , Matthew J. Holman

Multi-planet system architectures are frequently used to constrain possible formation and evolutionary pathways of observed exoplanets. Therefore, understanding the predictive and descriptive power of empirical models of these systems is…

Earth and Planetary Astrophysics · Physics 2025-04-17 Emma V. Turtelboom , Jamie Dietrich , Courtney D. Dressing , Caleb K. Harada

The ExoClock project is an open platform aiming to monitor exoplanets by integrating observations from space and ground based telescopes. This study presents an updated catalogue of 620 exoplanet ephemerides, integrating 30000 measurements…

Earth and Planetary Astrophysics · Physics 2025-11-19 A. Kokori , A. Tsiaras , G. Pantelidou , A. Jones , A. Siakas , B. Edwards , G. Tinetti , A. Wünsche , Y. Jongen , F. Libotte , M. Correa , L. V. Mugnai , A. Bocchieri , A. R. Capildeo , E. Poultourtzidis , C. Sidiropoulos , L. Bewersdorff , G. Lekkas , G. Grivas , R. A. Buckland , S. R. -L. Futcher , P. Matassa , J. -P. Vignes , A. O. Kovacs , M. Raetz , B. E. Martin , A. Popowicz , D. Gakis , P. Batsela , V. Michalaki , A. Nastasi , C. Pereira , A. Iliadou , F. Walter , N. I. Paschalis , K. Vats , N. A-thano , R. Abraham , V. K. Agnihotri , M. Á. Álava-Amat , R. Albanesi , T. Alderweireldt , J. Alonso-Santiago , D. Q. Amat , L. Andrade , V. Anzallo , J. Aragones , E. Arce-Mansego , D. Arnot , R. A. Artola , C. Aumasson , M. Bachschmidt , R. Barberá-Córdoba , J. -F. Barrois , P. R. Barroy , M. Bastoni , V. Béjar , A. A. Belinski , A. Ben Lassoued , P. Bendjoya , B. Benei , D. Bennett , K. Bernacki , G. O. Bernard , L. Betti , G. Biesse , M. Billiani , P. Bosch-Cabot , V. Boucher , R. C. Boufleur , D. Boulakos , P. J. -M. Brandebourg , S. M. Brincat , X. Bros , A. Brosio , S. Brouillard , A. -M. Bruzzone , L. Cabona , C. Calamai , G. Calapai , Y. Calatayud-Borràs , M. Caló , F. Campos , A. Carbognani , F. Carretero , R. Casas , M. L. Castanheira , G. Catanzaro , L. Cavaglioni , C. -M. Chang , M. Chella , W. -H. Chen , P. -J. Chiu , R. Ciantini , J. -F. Coliac , J. Collins , F. Conti , G. Conzo , W. R. Cooney, , L. N. Correa , S. P. Cosentino , N. Crouzet , M. V. Crow , B. V. -H. -V. da-Silva , A. Damonte , D. Daniel , S. Dawes , L. de Almeida , P. De Backer , A. de Melo , M. Deldem , D. Deligeorgopoulos , Y. Delisle , F. Denjean , F. Dias , S. Diaz Lopez , T. Dittadi , N. Dodd , S. Doman , G. Domènech-Rams , T. G. Dooley , S. Drapkin-Junyent , F. Dubois , A. Dustor , R. Dymock , T. Eenmäe , M. Emilio , E. Esparza-Borges , J. Estevez , C. Falco , R. G. Farfán , P. Farissier , G. Farrall , G. Fernandez Rodriguez , A. Ferretti , G. Ferrini , L. Fini , J. Fiołka , G. Fleerackers , J. Flores-Martín , g. follero , S. Foschino , L. Fossi , M. Fowler , A. Frasca , E. Frigeni , I. Fukuda , A. Fukui , G. Furlato , D. Gabellini , T. Gainey , P. Gajdoš , D. Galán-Diéguez , P. Gamache , E. García Navarro , N. A. Garcia , A. García-Sánchez , A. Garmash , T. Gesser , A. Ginard , I. Gkolias , E. Gomez , G. F. Gonçalves , J. González-Edo , J. González-Rodríguez , G. Gruntz , B. Guillet , T. Guillot , M. N. Günther , H. Hautecler , Y. Hayashi , E. Herrero , K. Hills , H. S. Hodkinson , G. Holtkamp , G. R. Hunt , N. Iannascoli , M. Iozzi , M. Irzyk , K. Isogai , K. Johnson , P. Jóźwik-Wabik , A. E. Kaeouach , S. Kartal , H. Kiiskinen , Ü. Kivila , U. Kolb , J. Korth , D. Kustrin , S. -P. Lai , S. Lasota , F. Le Rhun , Y. H. Lee , D. Lefoulon , F. Legrele , H. Leipold , A. Liberti , T. Lien , Y. -H. Lin , F. Linsalata , J. H. Livingston , C. Lopresti , S. Lora , E. R. Lorenz , D. Madison , M. Mannucci , A. Marchini , A. Marino , J. -C. Mario , E. Maris , J. -B. Marquette , N. A. Maslennikova , A. E. McGregor , A. Mengoudis , P. Meni , M. Mesarč , M. Michelagnoli , J. Michelet , J. Mieglitz , M. Mifsud , M. Miller , S. A. Mills , E. Miny , S. Miquel Romero , D. Molina , S. Montchaud , B. Monteleone , M. Monticelli , N. Montigiani , M. Morales-Aimar , G. Morello , L. Moretti , M. Mori , F. Mortari , M. Müller , D. Mura , F. Murgas , N. Narita , A. Nath , R. Nicollerat , V. Noce , P. Norridge , A. J. Norton , Y. Ogmen , Z. Orbanic , J. Owen-Lloyd-Walters , E. P. Pace , E. Pakštienė , A. F. Pala , E. Palle , C. Pantacchini , I. Parenti , D. Patterson , E. Pavoni , A. W. Pereira , I. Peretto , V. Perroud , S. W. Peterson , V. Pettina , M. Phillips , J. Philpot , D. Pica , P. Pintr , J. -B. Pioppa , T. J. Plunkett , T. G. Prado , A. Prasad , R. A. Prestes , A. Putz , F. Régembal , L. Ribe , D. F. Rocha , J. Rodrigues , R. Roth , L. Rousselot , N. Rozand , X. Rubia , N. Ruocco , M. Salisbury , T. Salomon , L. Sassaro , J. E. -G. Savage , T. Savin , F. Scaggiante , F. -X. Schmider , M. Serrau , I. D. Sharp , D. Shave-Wall , A. F. Silva , V. Školník , A. Solmaz , A. Sonka , M. Spiller , T. H. Sprecher , R. Stanga , M. Stefanini , D. Stouraitis , M. Stratigou-Psarra , O. Suarez , D. Suys , M. Szkudlarek , M. F. Talafha , A. N. Tarasenkov , G. Tartalo-Montardit , C. Titescu , A. Tomacelli , A. H. Triaud , S. Tsavdaridis , K. Tsiganis , M. A. van der Grijp , S. Vanaverbeke , j. -p. vergne , J. Verheyden , J. Vilalta , P. Vuylsteke , P. Wagner , D. Walliang , C. H. Wang , I. Weller , D. E. Wright , K. O. Xenos , R. Yorke , O. Zamora , J. Zapata , M. Zejmo , M. Zulian

We identify targets in the Kepler field that may be characterized by transit timing variations (TTVs) and are detectable by the Transiting Exoplanet Survey Satellite (TESS). Despite the reduced signal-to-noise ratio of TESS transits…

Earth and Planetary Astrophysics · Physics 2022-07-20 Daniel Jontof-Hutter , Paul A. Dalba , John H. Livingston

During the TESS prime mission, 74% of the sky area will only have an observational baseline of 27 days. For planets with orbital periods longer than 13.5 days, TESS can only capture one or two transits, and the planet ephemerides will be…

The Transiting Exoplanet Survey Satellite (TESS) has discovered hundreds of new worlds, with TESS planet candidates now outnumbering the total number of confirmed planets from $\textit{Kepler}$. Owing to differences in survey design, TESS…

The Kepler spacecraft provided the first long-baseline, high-precision photometry for large numbers of stars. This enabled the discovery of thousands of new exoplanets, and the characterization of myriad astrophysical phenomena. However,…

Solar and Stellar Astrophysics · Physics 2018-10-23 Thomas Barclay , Geert Barentsen

A re-purposed Kepler mission could continue the search for nearly Earth-sized planets in very short-period (< 1 day) orbits. Recent surveys of the Kepler data already available have revealed at least a dozen such planetary candidates, and a…

Earth and Planetary Astrophysics · Physics 2013-09-09 Brian Jackson

NASA's Kepler Space Telescope has collected high-precision, high-cadence time series photometry on 781,590 unique postage-stamp targets across 21 different fields of view. These observations have already yielded 2,496 scientific…

The Kepler, K2, and Transiting Exoplanet Survey Satellite (TESS) missions have provided a wealth of confirmed exoplanets, benefiting from a huge effort from the planet-hunting and follow-up community. With careful systematics mitigation,…

Transiting exoplanets in multi-planet systems exhibit non-Keplerian orbits as a result of the gravitational influence from companions which can cause the times and durations of transits to vary. The amplitude and periodicity of the transit…

Earth and Planetary Astrophysics · Physics 2019-12-24 Kyle A. Pearson

Much of the science from the exoplanets detected by the TESS mission relies on precisely predicted transit times that are needed for many follow-up characterization studies. We investigate ephemeris deterioration for simulated TESS planets…

Precise physical properties of the known transiting exoplanets are essential for their precise atmospheric characterization using modern and upcoming instruments. Leveraging the large volume of high SNR photometric follow-up data from TESS,…

Earth and Planetary Astrophysics · Physics 2025-11-25 Suman Saha

The TESS follow-up of a large number of known transiting exoplanets provide unique opportunity to study their physical properties more precisely. Being a space-based telescope, the TESS observations are devoid of any noise component…

Earth and Planetary Astrophysics · Physics 2025-11-25 Suman Saha

The legacy of NASA's K2 mission has provided hundreds of transiting exoplanets that can be revisited by new and future facilities for further characterization, with a particular focus on studying the atmospheres of these systems. However,…

Space-based transit missions such as Kepler and TESS have demonstrated that planets are ubiquitous. However, the success of these missions heavily depends on ground-based radial velocity (RV) surveys, which combined with transit photometry…

We present a new catalog of Kepler planet candidates that prioritizes accuracy of planetary dispositions and properties over uniformity. This catalog contains 4376 transiting planet candidates, including 1791 residing within 709…

We provide a database of transit times and updated ephemerides for 382 planets based on data from the NASA Transiting Exoplanet Survey Satellite (TESS) and previously reported transit times which were scraped from the literature in a…

Earth and Planetary Astrophysics · Physics 2022-04-20 Ekaterina S. Ivshina , Joshua N. Winn
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