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Related papers: TIaRA TESS 1: Estimating exoplanet yields from Yea…

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TESS is finding transiting planet candidates around bright, nearby stars across the entire sky. The large field-of-view, however, results in low spatial resolution, therefore multiple stars contribute to almost every TESS light curve.…

Earth and Planetary Astrophysics · Physics 2020-01-08 Carl Ziegler , Andrei Tokovinin , Cesar Briceno , James Mang , Nicholas Law , Andrew W. Mann

We present ExoMiner++, an enhanced deep learning model that builds on the success of ExoMiner to improve transit signal classification in 2-minute TESS data. ExoMiner++ incorporates additional diagnostic inputs, including periodogram, flux…

In our solar system massive outer planets dominate in terms of both mass and angular momentum, but few such planets are among the more than 4000 currently confirmed exoplanets, and none of these have accurately determined densities. Here I…

Earth and Planetary Astrophysics · Physics 2020-02-14 Derek Buzasi

The high quality light curves from the Transiting Exoplanet Survey Satellite (TESS) represent a unique laboratory for the study of stellar rotation, a fundamental observable driving stellar and planetary evolution, including planetary…

The Transiting Exoplanet Survey Satellite (TESS) will be conducting a nearly all-sky photometric survey over two years, with a core mission goal to discover small transiting exoplanets orbiting nearby bright stars. It will obtain 30-minute…

The Transiting Exoplanet Survey Satellite (TESS) is conducting a two-year wide-field survey searching for transiting exoplanets around nearby bright stars that will be ideal for follow-up characterization. To facilitate studies of planet…

Earth and Planetary Astrophysics · Physics 2019-05-15 Rachel A. Matson , Steve B. Howell , David Ciardi

NASA's Transiting Exoplanet Survey Satellite (TESS) mission promises to improve our understanding of hot Jupiters by providing an all-sky, magnitude-limited sample of transiting hot Jupiters suitable for population studies. Assembling such…

Earth and Planetary Astrophysics · Physics 2023-02-22 Samuel W. Yee , Joshua N. Winn , Joel D. Hartman , Luke G. Bouma , George Zhou , Samuel N. Quinn , David W. Latham , Allyson Bieryla , Joseph E. Rodriguez , Karen A. Collins , Owen Alfaro , Khalid Barkaoui , Corey Beard , Alexander A. Belinski , Zouhair Benkhaldoun , Paul Benni , Krzysztof Bernacki , Andrew W. Boyle , R. Paul Butler , Douglas A. Caldwell , Ashley Chontos , Jessie L. Christiansen , David R. Ciardi , Kevin I. Collins , Dennis M. Conti , Jeffrey D. Crane , Tansu Daylan , Courtney D. Dressing , Jason D. Eastman , Zahra Essack , Phil Evans , Mark E. Everett , Sergio Fajardo-Acosta , Raquel Forés-Toribio , Elise Furlan , Mourad Ghachoui , Michaël Gillon , Coel Hellier , Ian Helm , Andrew W. Howard , Steve B. Howell , Howard Isaacson , Emmanuel Jehin , Jon M. Jenkins , Eric L. N. Jensen , John F. Kielkopf , Didier Laloum , Naunet Leonhardes-Barboza , Sarah E. Logsdon , Jack Lubin , Michael B. Lund , Mason G. MacDougall , Andrew W. Mann , Natalia A. Maslennikova , Bob Massey , Kim K. McLeod , Jose A. Muñoz , Patrick Newman , Valeri Orlov , Peter Plavchan , Adam Popowicz , Francisco J. Pozuelos , Tyler A. Pritchard , Don J. Radford , Michael Reefe , George R. Ricker , Alexander Rudat , Boris S. Safonov , Richard P. Schwarz , Heidi Schweiker , Nicholas J. Scott , S. Seager , Stephen A. Shectman , Chris Stockdale , Thiam-Guan Tan , Johanna K. Teske , Neil B. Thomas , Mathilde Timmermans , Roland Vanderspek , David Vermilion , David Watanabe , Lauren M. Weiss , Richard G. West , Judah Van Zandt , Michal Zejmo , Carl Ziegler

This paper investigates the frequency of transiting planetary systems around metal-polluted white dwarfs using high-cadence photometry from ULTRACAM and ULTRASPEC on the ground, and space-based observations with TESS. Within a sample of 313…

The transit method of exoplanet discovery and characterization has enabled numerous breakthroughs in exoplanetary science. These include measurements of planetary radii, mass-radius relationships, stellar obliquities, bulk density…

The Transiting Exoplanet Survey Satellite (TESS) will observe $\sim$150~million stars brighter than $T_{\rm mag} \approx 16$, with photometric precision from 60~ppm to 3~percent, enabling an array of exoplanet and stellar astrophysics…

Instrumentation and Methods for Astrophysics · Physics 2018-09-05 Ryan J. Oelkers , Keivan G. Stassun

We present the detection of 1,617 new transiting planet candidates, identified in the Transiting Exoplanet Survey Satellite (TESS) full-frame images (FFIs) observed during the Primary Mission (Sectors 1 - 26). These candidates were…

We present a method for deriving a probabilistic estimate of the true source of a detected TESS transiting event. Our method relies on comparing the observed photometric centroid offset for the target star with models of the offset that…

Earth and Planetary Astrophysics · Physics 2023-10-25 Andreas Hadjigeorghiou , David J. Armstrong

We apply the ${\tt weirddetector}$, a nonparametric signal detection algorithm based on phase dispersion minimization, in a search for low duty-cycle periodic signals in the Transiting Exoplanet Survey Satellite (${\it TESS}$) photometry.…

Earth and Planetary Astrophysics · Physics 2020-09-30 Joheen Chakraborty , Adam Wheeler , David Kipping

As the NASA Transiting Exoplanet Survey Satellite (TESS) fulfills its primary mission, it is executing an unprecedented survey of almost the entire sky: TESS's approved extended mission will likely extend sky coverage to ~94%, including…

Earth and Planetary Astrophysics · Physics 2019-11-12 Matthew J Payne , Matthew J Holman , András Pál

The Transiting Exoplanet Survey Satellite will conduct a 2-year long wide-field survey searching for transiting planets around bright stars. Many TESS discoveries will be amenable to mass characterization via ground-based radial velocity…

Earth and Planetary Astrophysics · Physics 2018-08-15 Ryan Cloutier , René Doyon , François Bouchy , Guillaume Hébrard

The large number of exoplanets discovered with the Transiting Exoplanet Survey Satellite (TESS) means that any observational biases from TESS could influence the derived stellar multiplicity statistics of exoplanet host stars. To…

Understanding the demographics of close-in planets is crucial for insights into exoplanet formation and evolution. We present a detailed analysis of occurrence rates for close-in (0.5-16 day) planets with radii between 2 and…

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