A Revised Exoplanet Yield from the Transiting Exoplanet Survey Satellite (TESS)

被引:223
作者
Barclay, Thomas [1 ,2 ]
Pepper, Joshua [3 ]
Quintana, Elisa V. [1 ]
机构
[1] NASA, Goddard Space Flight Ctr, 8800 Greenbelt Rd, Greenbelt, MD 20771 USA
[2] Univ Maryland Baltimore Cty, 1000 Hilltop Circle, Baltimore, MD 21250 USA
[3] Lehigh Univ, Dept Phys, 16 Mem Dr East, Bethlehem, PA 18015 USA
关键词
catalogs; methods: statistical; planetary systems; surveys; KEPLER; PLANETS; DWARF; CANDIDATES; SYSTEM; STARS; K2; COMPUTATION; FREQUENCY; COMPANION;
D O I
10.3847/1538-4365/aae3e9
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The Transiting Exoplanet Survey Satellite (TESS) has a goal of detecting small planets orbiting stars bright enough for mass determination via ground-based radial velocity observations. Here, we present estimates of how many exoplanets the TESS mission will detect, the physical properties of the detected planets, and the properties of the stars that those planets orbit. This work uses stars drawn from the TESS Input Catalog Candidate Target List and revises yields from prior studies that were based on Galactic models. We modeled the TESS observing strategy to select approximately 200,000 stars at 2-minute cadence, while the remaining stars are observed at 30-minute cadence in full-frame image data. We placed zero or more planets in orbit around each star, with physical properties following measured exoplanet occurrence rates, and used the TESS noise model to predict the derived properties of the detected exoplanets. In the TESS 2-minute cadence mode we estimate that TESS will find 1250 +/- 70 exoplanets (90% confidence), including 250 smaller than 2 R-circle plus. Furthermore, we predict that an additional 3100 planets will be found in full-frame image data orbiting bright dwarf stars and more than 10,000 around fainter stars. We predict that TESS will find 500 planets orbiting M dwarfs, but the majority of planets will orbit stars larger than the Sun. Our simulated sample of planets contains hundreds of small planets amenable to radial velocity follow-up, potentially more than tripling the number of planets smaller than 4 R-circle plus with mass measurements. This sample of simulated planets is available for use in planning follow-up observations and analyses.
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页数:15
相关论文
共 99 条
[1]   The NASA Exoplanet Archive: Data and Tools for Exoplanet Research [J].
Akeson, R. L. ;
Chen, X. ;
Ciardi, D. ;
Crane, M. ;
Good, J. ;
Harbut, M. ;
Jackson, E. ;
Kane, S. R. ;
Laity, A. C. ;
Leifer, S. ;
Lynn, M. ;
McElroy, D. L. ;
Papin, M. ;
Plavchan, P. ;
Ramirez, S. V. ;
Rey, R. ;
von Braun, K. ;
Wittman, M. ;
Abajian, M. ;
Ali, B. ;
Beichman, C. ;
Beekley, A. ;
Berriman, G. B. ;
Berukoff, S. ;
Bryden, G. ;
Chan, B. ;
Groom, S. ;
Lau, C. ;
Payne, A. N. ;
Regelson, M. ;
Saucedo, M. ;
Schmitz, M. ;
Stauffer, J. ;
Wyatt, P. ;
Zhang, A. .
PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF THE PACIFIC, 2013, 125 (930) :989-999
[2]   Transit shapes and self-organizing maps as a tool for ranking planetary candidates: application to Kepler and K2 [J].
Armstrong, D. J. ;
Pollacco, D. ;
Santerne, A. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2017, 465 (03) :2634-2642
[3]  
Ballard S., 2018, ARXIV180104949
[4]  
Barclay T, 2018, COCO COMMAND LINE TO, DOI [10.5281/zenodo.1216241, DOI 10.5281/ZENODO.1216241]
[5]   RADIAL VELOCITY OBSERVATIONS AND LIGHT CURVE NOISE MODELING CONFIRM THAT KEPLER-91b IS A GIANT PLANET ORBITING A GIANT STAR [J].
Barclay, Thomas ;
Endl, Michael ;
Huber, Daniel ;
Foreman-Mackey, Daniel ;
Cochran, William D. ;
MacQueen, Phillip J. ;
Rowe, Jason F. ;
Quintana, Elisa V. .
ASTROPHYSICAL JOURNAL, 2015, 800 (01)
[6]   PandExo: A Community Tool for Transiting Exoplanet Science with JWST & HST [J].
Batalha, Natasha E. ;
Mandell, Avi ;
Pontoppidan, Klaus ;
Stevenson, Kevin B. ;
Lewis, Nikole K. ;
Kalirai, Jason ;
Earl, Nick ;
Greene, Thomas ;
Albert, Loic ;
Nielsen, Louise D. .
PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF THE PACIFIC, 2017, 129 (976)
[7]   The HARPS search for southern extra-solar planets XXXI. The M-dwarf sample [J].
Bonfils, X. ;
Delfosse, X. ;
Udry, S. ;
Forveille, T. ;
Mayor, M. ;
Perrier, C. ;
Bouchy, F. ;
Gillon, M. ;
Lovis, C. ;
Pepe, F. ;
Queloz, D. ;
Santos, N. C. ;
Segransan, D. ;
Bertaux, J. -L .
ASTRONOMY & ASTROPHYSICS, 2013, 549
[8]   Kepler Planet-Detection Mission: Introduction and First Results [J].
Borucki, William J. ;
Koch, David ;
Basri, Gibor ;
Batalha, Natalie ;
Brown, Timothy ;
Caldwell, Douglas ;
Caldwell, John ;
Christensen-Dalsgaard, Jorgen ;
Cochran, William D. ;
DeVore, Edna ;
Dunham, Edward W. ;
Dupree, Andrea K. ;
Gautier, Thomas N., III ;
Geary, John C. ;
Gilliland, Ronald ;
Gould, Alan ;
Howell, Steve B. ;
Jenkins, Jon M. ;
Kondo, Yoji ;
Latham, David W. ;
Marcy, Geoffrey W. ;
Meibom, Soren ;
Kjeldsen, Hans ;
Lissauer, Jack J. ;
Monet, David G. ;
Morrison, David ;
Sasselov, Dimitar ;
Tarter, Jill ;
Boss, Alan ;
Brownlee, Don ;
Owen, Toby ;
Buzasi, Derek ;
Charbonneau, David ;
Doyle, Laurance ;
Fortney, Jonathan ;
Ford, Eric B. ;
Holman, Matthew J. ;
Seager, Sara ;
Steffen, Jason H. ;
Welsh, William F. ;
Rowe, Jason ;
Anderson, Howard ;
Buchhave, Lars ;
Ciardi, David ;
Walkowicz, Lucianne ;
Sherry, William ;
Horch, Elliott ;
Isaacson, Howard ;
Everett, Mark E. ;
Fischer, Debra .
SCIENCE, 2010, 327 (5968) :977-980
[9]  
Bouma L. G., 2017, ARXIV170508891
[10]   TERRESTRIAL PLANET OCCURRENCE RATES FOR THE KEPLER GK DWARF SAMPLE [J].
Burke, Christopher J. ;
Christiansen, Jessie L. ;
Mullally, F. ;
Seader, Shawn ;
Huber, Daniel ;
Rowe, Jason F. ;
Coughlin, Jeffrey L. ;
Thompson, Susan E. ;
Catanzarite, Joseph ;
Clarke, Bruce D. ;
Morton, Timothy D. ;
Caldwell, Douglas A. ;
Bryson, Stephen T. ;
Haas, Michael R. ;
Batalha, Natalie M. ;
Jenkins, Jon M. ;
Tenenbaum, Peter ;
Twicken, Joseph D. ;
Li, Jie ;
Quintana, Elisa ;
Barclay, Thomas ;
Henze, Christopher E. ;
Borucki, William J. ;
Howell, Steve B. ;
Still, Martin .
ASTROPHYSICAL JOURNAL, 2015, 809 (01)