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Transiting Exoplanet Survey Satellite (TESS)

G. RickerJoshua N. WinnR. VanderspekDavid W. LathamG. Á. BakosJacob L. BeanZachory K. Berta-ThompsonTimothy M. BrownLars A. BuchhaveN. ButlerR. Paul ButlerW. J. ChaplinDavid CharbonneauJ. Christensen‐DalsgaardMark ClampinDrake DemingJ. DotyNathan De LeeCourtney D. DressingEdward W. DunhamMichael EndlFrançois FressinJian GeThomas HenningMatthew J. HolmanAndrew W. HowardShigeru IdaJon JenkinsG. JerniganJohn Asher JohnsonLisa KalteneggerN. KawaiH. KjeldsenGregory LaughlinAlan M. LevineD. N. C. LinJack J. LissauerPhillip J. MacQueenGeoffrey W. MarcyP. R. McCulloughTimothy D. MortonNorio NaritaMartin PaegertΕ. ΠάλληF. PepeJoshua PepperA. QuirrenbachStephen A. RinehartDimitar SasselovBun’ei SatoSara SeagerA. SozzettiKeivan G. StassunPeter SullivanAndrew SzentgyorgyiGuillermo TorresS. UdryJ. Villaseñor

Abstract

The Transiting Exoplanet Survey Satellite (TESS ) will search for planets transiting bright and nearby stars. TESS has been selected by NASA for launch in 2017 as an Astrophysics Explorer mission. The spacecraft will be placed into a highly elliptical 13.7-day orbit around the Earth. During its two-year mission, TESS will employ four wide-field optical CCD cameras to monitor at least 200,000 main-sequence dwarf stars with I<sub>C</sub> (approximately less than) 13 for temporary drops in brightness caused by planetary transits. Each star will be observed for an interval ranging from one month to one year, depending mainly on the star's ecliptic latitude. The longest observing intervals will be for stars near the ecliptic poles, which are the optimal locations for follow-up observations with the James Webb Space Telescope. Brightness measurements of preselected target stars will be recorded every 2 min, and full frame images will be recorded every 30 min. TESS stars will be 10-100 times brighter than those surveyed by the pioneering Kepler mission. This will make TESS planets easier to characterize with follow-up observations. TESS is expected to find more than a thousand planets smaller than Neptune, including dozens that are comparable in size to the Earth. Public data releases will occur every four months, inviting immediate community-wide efforts to study the new planets. The TESS legacy will be a catalog of the nearest and brightest stars hosting transiting planets, which will endure as highly favorable targets for detailed investigations.

Stellar, planetary, and galactic studiesAstronomy and Astrophysical ResearchAstrophysics and Star Formation StudiesExoplanetSatelliteAstrobiologyComputer scienceAstronomyRemote sensingEnvironmental sciencePlanetPhysicsGeology

Funding

  • National Aeronautics and Space Administration
  • Ames Research Center
  • Goddard Space Flight Center
  • NASA Headquarters
Citations
983
FWCI
39.82
field-weighted impact
References
52
Percentile
100%
vs. same field & year
Citations per year
Cited by
The TESS science processing operations center
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The Astrophysical Journal Letters · 2010 · 626 citations
The Two Micron All Sky Survey (2MASS)
The Astronomical Journal · 2006 · 11,488 citations
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The Astronomical Journal · 2013 · 1,108 citations
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