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Related papers: Transiting Exoplanet Simulations with the James We…

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To increase the sample size of future atmospheric characterization efforts, we build on the planetary infrared excess (PIE) technique that has been proposed as a means to detect and characterize the thermal spectra of transiting and…

Earth and Planetary Astrophysics · Physics 2021-11-03 Jacob Lustig-Yaeger , Kevin B. Stevenson , L. C. Mayorga , Kristin S. Sotzen , Erin M. May , Noam R. Izenberg , Kathleen Mandt

The precise characterization of terrestrial atmospheres with the James Webb Space Telescope (JWST) is one of the utmost goals of exoplanet astronomy in the next decade. With JWST's impending launch, it is crucial we are well prepared to…

Earth and Planetary Astrophysics · Physics 2021-04-28 E. M. May , J. Taylor , T. D. Komacek , M. R. Line , V. Parmentier

The recent discovery of three Earth-sized, potentially habitable planets around a nearby cool star, TRAPPIST-1, has provided three key targets for the upcoming James Webb Space Telescope (JWST). Depending on their atmospheric…

Earth and Planetary Astrophysics · Physics 2016-06-08 Joanna K. Barstow , Patrick G. J. Irwin

Transmission spectroscopy of exoplanets has revealed signatures of water vapor, aerosols, and alkali metals in a few dozen exoplanet atmospheres. However, these previous inferences with the Hubble and Spitzer Space Telescopes were hindered…

The James Webb Space Telescope (JWST) has begun to spectrally characterize small exoplanets orbiting M-dwarf stars, but interpretation of these spectra is ambiguous, with stellar, instrumental, or atmospheric origins possible for apparent…

Much of the focus of exoplanet atmosphere analysis in the coming decade will be atinfrared wavelengths, with the planned launches of the James Webb Space Telescope (JWST) and the Wide-Field Infrared Survey Telescope (WFIRST). However,…

We present improved physical parameters for four hot Jupiters: KELT-7 b, HAT-P-14 b, WASP-29 b, WASP-95 b, and a hot Neptune: WASP-156 b, by performing critical and rigorous analysis of the time-series observations from the Transiting…

Earth and Planetary Astrophysics · Physics 2021-11-17 Suman Saha , Sujan Sengupta

The James Webb Space Telescope (JWST) is a large, infrared space telescope that has recently started its science program which will enable breakthroughs in astrophysics and planetary science. Notably, JWST will provide the very first…

Instrumentation and Methods for Astrophysics · Physics 2023-05-31 Michael W. McElwain , Lee D. Feinberg , Marshall D. Perrin , Mark Clampin , C. Matt Mountain , Matthew D. Lallo , Charles-Philippe Lajoie , Randy A. Kimble , Charles W. Bowers , Christopher C. Stark , D. Scott Acton , Ken Aiello , Charles Atkinson , Beth Barinek , Allison Barto , Scott Basinger , Tracy Beck , Matthew D. Bergkoetter , Marcel Bluth , Rene A. Boucarut , Gregory R. Brady , Keira J. Brooks , Bob Brown , John Byard , Larkin Carey , Maria Carrasquilla , Sid Celeste , Dan Chae , David Chaney , Pierre Chayer , Taylor Chonis , Lester Cohen , Helen J. Cole , Thomas M. Comeau , Matthew Coon , Eric Coppock , Laura Coyle , Rick Davis , Bruce H. Dean , Kenneth J. Dziak , Michael Eisenhower , Nicolas Flagey , Randy Franck , Benjamin Gallagher , Larry Gilman , Tiffany Glassman , Gary Golnik , Joseph J. Green , John Grieco , Shari Haase , Theodore J. Hadjimichael , John G. Hagopian , Walter G. Hahn , George F. Hartig , Keith A. Havey , William L. Hayden , Robert Hellekson , Brian Hicks , Sherie T. Holfeltz , Joseph M. Howard , Jesse A. Huguet , Brian Jahne , Leslie A. Johnson , John D. Johnston , Alden S. Jurling , Jeffrey R. Kegley , Scott Kennard , Ritva A. Keski-Kuha , J. Scott Knight , Bernard A. Kulp , Joshua S. Levi , Marie B. Levine , Paul Lightsey , Robert A. Luetgens , John C. Mather , Gary W. Matthews , Andrew G. McKay , Kimberly I. Mehalick , Marcio Meléndez , Ted Messer , Gary E. Mosier , Jess Murphy , Edmund P. Nelan , Malcolm B. Niedner , Darin M. Noël , Catherine M. Ohara , Raymond G. Ohl , Eugene Olczak , Shannon B. Osborne , Sang Park , Kevin Patton , Charles Perrygo , Laurent Pueyo , Lisbeth Quesnel , Dale Ranck , David C. Redding , Michael W. Regan , Paul Reynolds , Rich Rifelli , Jane R. Rigby , Derek Sabatke , Babak N. Saif , Thomas R. Scorse , Byoung-Joon Seo , Fang Shi , Norbert Sigrist , Koby Smith , J. Scott Smith , Erin C. Smith , Sangmo Tony Sohn , John Spina , H. Philip Stahl , Randal Telfer , Todd Terlecki , Scott C. Texter , David Van Buren , Julie M. Van Campen , Begoña Vila , Mark F. Voyton , Mark Waldman , Chanda B. Walker , Nick Weiser , Conrad Wells , Garrett West , Tony L. Whitman , Eric Wick , Erin Wolf , Greg Young , Thomas P. Zielinski

With a new generation of observatories coming online this decade, the process of characterizing exoplanet atmospheres will need to be reinvented. Currently mostly on the instrumental side, characterization bottlenecks will soon stand by the…

Earth and Planetary Astrophysics · Physics 2022-09-16 Prajwal Niraula , Julien de Wit , Iouli E. Gordon , Robert J. Hargreaves , Clara Sousa-Silva , Roman V. Kochanov

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

The evolution of space technology in recent years, fueled by advancements in computing such as Artificial Intelligence (AI) and machine learning (ML), has profoundly transformed our capacity to explore the cosmos. Missions like the James…

Earth and Planetary Astrophysics · Physics 2025-10-13 Vasuda Trehan , Kevin H. Knuth , M. J. Way

In our search for life beyond the Solar System, certain planetary bodies may be more conducive to life than Earth. However, the observability of these `superhabitable' planets in the habitable zones around K dwarf stars has not been fully…

Earth and Planetary Astrophysics · Physics 2025-01-07 Iva Vilović , Jayesh Goyal , René Heller , Fanny Marie von Schauenburg

We propose to use Kepler in 2-wheel mode to conduct a detailed search for Earth-sized planets orbiting ultra-cool stars and brown dwarfs (spectral types from M7 to L3). This population of objects presents several advantages for exoplanet…

Observed exoplanet transit spectra are usually retrieved using 1D models to determine atmospheric composition while planetary atmospheres are 3D. With the JWST and future space telescopes such as Ariel, we will be able to obtain…

This white paper examines the benefit of the upcoming James Webb Space Telescope for studies of the Solar System's four giant planets: Jupiter, Saturn, Uranus, and Neptune. JWST's superior sensitivity, combined with high spatial and…

With high-resolution spectroscopy we can study exoplanet atmospheres and learn about their chemical composition, temperature profiles, and presence of clouds and winds, mainly in hot, giant planets. State-of-the-art instrumentation is…

Earth and Planetary Astrophysics · Physics 2023-02-22 M. Lafarga , M. Brogi , S. Gandhi , H. M. Cegla , J. V. Seidel , L. Doyle , R. Allart , N. Buchschacher , M. Lendl , C. Lovis , D. Sosnowska

In the blooming field of exoplanetary science, NASA's Kepler Space Telescope has revolutionized our understanding of exoplanets. Kepler's very precise and long-duration photometry is ideal for detecting planetary transits around Sun-like…

Earth and Planetary Astrophysics · Physics 2017-01-18 Giacomo Fragione , Idan Ginsburg

The TRAPPIST-1 system offers one of the best opportunities to characterize temperate terrestrial planets beyond our own solar system. Within the TRAPPIST-1 system, planet e stands out as highly likely to sustain surface liquid water if it…

We propose a method to distinguish between cloudy, hazy and clearsky (free of clouds and hazes) exoplanet atmospheres that could be applicable to upcoming large aperture space and ground-based telescopes such as the James Webb Space…

Earth and Planetary Astrophysics · Physics 2014-10-28 Amit Misra , Victoria Meadows

Exoplanet habitability is traditionally assessed by comparing a planet's semi-major axis to the location of its host star's "habitable zone," the shell around a star for which Earth-like planets can possess liquid surface water. The Kepler…

Earth and Planetary Astrophysics · Physics 2015-10-01 Rory Barnes , Victoria S. Meadows , Nicole Evans