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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…

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…

Stellar RV jitter due to surface activity may bias the RV semi-amplitude and mass of rocky planets. The amplitude of the jitter may be estimated from the uncertainty in the rotation period, allowing the mass to be more accurately obtained.…

The Transiting Exoplanet Survey Satellite (TESS) is a NASA-sponsored Explorer mission that will perform a wide-field survey for planets that transit bright host stars. Here, we predict the properties of the transiting planets that TESS will…

We present simulations of multi-year RV follow up campaigns of the {\it TESS} small exoplanet yield on the Automated Planet Finder telescope, using four different schemes to sample the transiting planets' RV phase curves. For planets below…

地球与行星天体物理 · 物理学 2018-11-28 Jennifer Burt , Bradford P. Holden , Angie Wolfgang , L. G. Bouma

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…

地球与行星天体物理 · 物理学 2018-10-31 Thomas Barclay , Joshua Pepper , Elisa V. Quintana

A transiting planet invites us to measure its size, mass, orbital parameters, atmospheric composition, and other characteristics. But the invitation can only be accepted if the host star is bright enough for precise measurements of its flux…

地球与行星天体物理 · 物理学 2024-10-18 Joshua N. Winn

In this paper, we present a homogeneous analysis of close-in Neptune planets. To do this, we compile a sample of TESS-observed planets using a ranking criterion which takes into account the planet's period, radius, and the visual magnitude…

In the search for life in the cosmos, NASA's Transiting Exoplanet Survey Satellite (TESS) mission has already monitored about 74% of the sky for transiting extrasolar planets, including potentially habitable worlds. However, TESS only…

地球与行星天体物理 · 物理学 2021-05-05 L. Kaltenegger , J. Pepper , P. M. Christodoulou , K. Stassun , S. Quinn , C. Burke

We present an analysis of a volume-complete sample of 363 mid-to-late M dwarfs within 15 pc of the Sun with masses between 0.1 and 0.3 M$_\odot$ observed by TESS within Observation Sectors 1 to 42. The median mass of the stars in this…

地球与行星天体物理 · 物理学 2023-06-06 Kristo Ment , David Charbonneau

Terrestrial planets are easier to detect around M dwarfs than other types of stars, making them promising for next-generation atmospheric characterization studies. The $TESS$ mission has greatly increased the number of known M dwarf planets…

地球与行星天体物理 · 物理学 2022-12-14 Madison Brady , Jacob Bean

Within the first few hundreds of millions of years, many physical processes sculpt the eventual properties of young planets. NASA's TESS mission has surveyed young stellar associations across the entire sky for transiting planets providing…

The number of potentially habitable planets continues to increase, but we lack the time and resources to characterize all of them. With $\sim$30 known potentially habitable planets and an ever-growing number of candidate and confirmed…

地球与行星天体物理 · 物理学 2022-04-27 Austin Ware , Patrick Young , Amanda Truitt , Alexander Spacek

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…

地球与行星天体物理 · 物理学 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

The radius of a planet is a fundamental parameter that probes its composition and habitability. Precise radius measurements are typically derived from the fraction of starlight blocked when a planet transits its host star. The wide-field…

地球与行星天体物理 · 物理学 2025-11-12 Te Han , Paul Robertson , Timothy D. Brandt , Shubham Kanodia , Caleb Cañas , Avi Shporer , George Ricker , Corey Beard

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.…

地球与行星天体物理 · 物理学 2020-01-08 Carl Ziegler , Andrei Tokovinin , Cesar Briceno , James Mang , Nicholas Law , Andrew W. Mann
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