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Among the group of extrasolar planets, transiting planets provide a great opportunity to obtain direct measurements for the basic physical properties, such as mass and radius of these objects. These planets are therefore highly important in…

Instrumentation and Methods for Astrophysics · Physics 2009-06-19 András Pál

Direct imaging of extrasolar planets with future space-based coronagraphic telescopes may provide a means of detecting companion moons at wavelengths where the moon outshines the planet. We propose a detection strategy based on the…

Earth and Planetary Astrophysics · Physics 2015-10-14 Eric Agol , Tiffany Jansen , Brianna Lacy , Tyler Robinson , Victoria Meadows

The mission of NASA's Terrestrial Planet Finder (TPF) is to find Earth-like planets orbiting other stars and characterize the atmospheres of these planets using spectroscopy. Because of the enormous brightness ratio between the star and the…

Astrophysics · Physics 2009-11-06 Peter Nisenson , Costas Papaliolios

We report new methods for evaluating realistic observing programs that search stars for planets by direct imaging, where observations are selected from an optimized star list, and where stars can be observed multiple times. We show how…

Instrumentation and Methods for Astrophysics · Physics 2015-05-18 Robert A. Brown , Remi Soummer

The Telescope to Observe Planetary Systems (TOPS) is a proposed space mission to image in the visible (0.4-0.9 micron) planetary systems of nearby stars simultaneously in 16 spectral bands (resolution R~20). For the ~10 most favorable…

By targeting nearby M dwarfs, a transit search using modest equipment is capable of discovering planets as small as 2 Earth radii in the habitable zones of their host stars. The MEarth Project, a future transit search, aims to employ a…

Astrophysics · Physics 2014-11-18 Philip Nutzman , David Charbonneau

High-resolution spectroscopic searches for the starlight reflected from close-in extra-solar giant planets have the capability of determining the optical albedo spectra and scattering properties of these objects. When combined with radial…

Astrophysics · Physics 2009-11-10 C. Leigh , A. Collier Cameron , T. Guillot

The XO project aims at detecting transiting exoplanets around bright stars from the ground using small telescopes. The original configuration of XO (McCullough et al. 2005) has been changed and extended as described here. The instrumental…

Instrumentation and Methods for Astrophysics · Physics 2019-02-06 Nicolas Crouzet

(abridged) The discovery of OGLE 2005-BLG-390Lb, the first cool rocky/icy exoplanet, impressively demonstrated the sensitivity of the microlensing technique to extra-solar planets below 10 M_earth. A planet of 1 M_earth in the same spot…

The Microlensing Planet Finder (MPF) is a proposed Discovery mission that will complete the first census of extrasolar planets with sensitivity to planets like those in our own solar system. MPF will employ a 1.1m aperture telescope, which…

Mountain ranges, volcanoes, trenches, and craters are common on rocky bodies throughout the Solar System, and we might we expect the same for rocky exoplanets. With ever larger telescopes under design and a growing need to not just detect…

Earth and Planetary Astrophysics · Physics 2018-01-31 Moiya A. S. McTier , David M. Kipping

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…

We introduce a new method of searching for and characterizing extra-solar planets. We show that by monitoring the center-of-light motion of microlensing alerts using the next generation of high precision astrometric instruments the…

Astrophysics · Physics 2009-10-31 Neda Safizadeh , Neal Dalal , Kim Griest

With TESS and ground-based surveys searching for rocky exoplanets around cooler, nearby stars, the number of Earth-sized exoplanets that are well-suited for atmospheric follow-up studies will increase significantly. For atmospheric…

Instrumentation and Methods for Astrophysics · Physics 2019-05-08 Ashley D. Baker , Cullen H. Blake , Sam Halverson

Nearby giant exoplanets offer an opportunity to search for moons (exomoons) orbiting them. Here, we present a simulation framework for investigating the possibilities of detecting exomoons via their astrometric signal in planet-to-star…

Earth and Planetary Astrophysics · Physics 2025-09-18 Kevin Wagner , Ewan Douglas , Steve Ertel , Kyran Grattan , S. Pete Worden , Aniket Sanghi , Billy Quarles , Charles Beichman

The addition of an external starshade to the {\it Nancy Grace Roman Space Telescope} will enable the direct imaging of Earth-radius planets orbiting at $\sim$1 AU. Classification of any detected planets as Earth-like requires both…

For centuries, astronomers have discussed the possibility of inhabited worlds - from Herschel's 18th-century observations suggesting Mars may host life, to the systematic search for technosignatures that began in the 1960s using radio…

Instrumentation and Methods for Astrophysics · Physics 2025-10-22 Beatriz Villarroel , Wesley A. Watters , Alina Streblyanska , Enrique Solano , Stefan Geier , Lars Mattsson

Among various techniques to search for extra-solar planets, microlensing has some unique characteristics. Contrary to all other methods which favour nearby objects, microlensing is sensitive to planets around stars at distances of several…

Located at the bottom of the main sequence, ultracool dwarf stars are widespread in the solar neighbourhood. Nevertheless, their extremely low luminosity has left their planetary population largely unexplored, and only one of them,…

Earth and Planetary Astrophysics · Physics 2024-06-04 Michaël Gillon , Peter P. Pedersen , Benjamin V. Rackham , Georgina Dransfield , Elsa Ducrot , Khalid Barkaoui , Artem Y. Burdanov , Urs Schroffenegger , Yilen Gómez Maqueo Chew , Susan M. Lederer , Roi Alonso , Adam J. Burgasser , Steve B. Howell , Norio Narita , Julien de Wit , Brice-Olivier Demory , Didier Queloz , Amaury H. M. J. Triaud , Laetitia Delrez , Emmanuël Jehin , Matthew J. Hooton , Lionel J. Garcia , Clàudia Jano Muñoz , Catriona A. Murray , Francisco J. Pozuelos , Daniel Sebastian , Mathilde Timmermans , Samantha J. Thompson , Sebastián Zúñiga-Fernández 1 , Jesús Aceituno , Christian Aganze , Pedro J. Amado , Thomas Baycroft , Zouhair Benkhaldoun , David Berardo , Emeline Bolmont , Catherine A. Clark , Yasmin T. Davis , Fatemeh Davoudi , Zoë L. de Beurs , Jerome P. de Leon , Masahiro Ikoma , Kai Ikuta , Keisuke Isogai , Izuru Fukuda , Akihiko Fukui , Roman Gerasimov , Mourad Ghachoui , Maximilian N. Günther , Samantha Hasler , Yuya Hayashi , Kevin Heng , Renyu Hu , Taiki Kagetani , Yugo Kawai , Kiyoe Kawauchi , Daniel Kitzmann , Daniel D. B. Koll , Monika Lendl , John H. Livingston , Xintong Lyu , Erik A. Meier Valdés , Mayuko Mori , James J. McCormac , Felipe Murgas , Prajwal Niraula , Enric Pallé , Ilse Plauchu-Frayn , Rafael Rebolo , Laurence Sabin , Yannick Schackey , Nicole Schanche , Franck Selsis , Alfredo Sota , Manu Stalport , Matthew R. Standing , Keivan G. Stassun , Motohide Tamura , Christopher A. Theissen , Martin Turbet , Valérie Van Grootel , Roberto Varas , Noriharu Watanabe , Francis Zong Lang

Significant advances in the discovery and characterization of the planetary systems of nearby stars can be accomplished with a moderate aperture high performance coronagraphic space mission that could be started in the next decade. Its…

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