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Detection and characterization of potentially habitable Earth-size extrasolar planets is one of the major goals of contemporary astronomy. By applying the transit method to very low-mass M-dwarfs, it is possible to find these planets from…

We highlight how guaranteed time observations (GTOs) and early release science (ERS) will advance understanding of exoplanet atmospheres and provide a glimpse into what transiting exoplanet science will be done with JWST during its first…

Due to their extremely small luminosity compared to the stars they orbit, planets outside our own Solar System are extraordinarily difficult to detect directly in optical light. Careful photometric monitoring of distant stars, however, can…

The Transiting Exoplanet Survey Satellite (TESS) is conducting a two-year wide-field survey searching for transiting exoplanets around nearby bright stars that will be ideal for follow-up characterization. To facilitate studies of planet…

Earth and Planetary Astrophysics · Physics 2019-05-15 Rachel A. Matson , Steve B. Howell , David Ciardi

The Large Synoptic Survey Telescope (LSST) is an ambitious astronomical survey with a similarly ambitious Data Management component. Data Management for LSST includes processing on both nightly and yearly cadences to generate transient…

We analyze the properties of searches devoted to finding planetary transits by observing simple stellar systems, such as globular clusters, open clusters, and the Galactic bulge. We develop the analytic tools necessary to predict the number…

Astrophysics · Physics 2009-11-10 J. Pepper , B. S. Gaudi

SPECULOOS (Search for habitable Planets EClipsing ULtra-cOOl Stars) aims to perform a transit search on the nearest ($<40$pc) ultracool ($<3000$K) dwarf stars. The project's main motivation is to discover potentially habitable planets…

The transit method of exoplanet discovery and characterization has enabled numerous breakthroughs in exoplanetary science. These include measurements of planetary radii, mass-radius relationships, stellar obliquities, bulk density…

Exoplanet research has shown an incessant growth since the first claim of a hot giant planet around a solar-like star in the mid-1990s. Today, the new facilities are working to spot the first habitable rocky planets around low-mass stars as…

Instrumentation and Methods for Astrophysics · Physics 2018-08-08 Serena Benatti

The detection of transits is an efficient technique to uncover faint companions around stars. The full characterisation of the companions (M-type stars, brown dwarfs or exoplanets) requires high-resolution spectroscopy to measure properly…

Astrophysics · Physics 2008-12-18 J. Gallardo , D. Minniti , D. Valls-Gabaud , M. Rejkuba

A large wide-field telescope and camera with optical throughput over 200 m^2 deg^2 -- a factor of 50 beyond what we currently have -- would enable the detection of faint moving or bursting optical objects: from Earth threatening asteroids…

Astrophysics · Physics 2009-11-07 J. Anthony Tyson , the LSST Collaboration

We used the 0.5-m robotic telescopes located at the Special Astrophysical Observatory of the Russian Academy of Sciences for monitoring two square degrees of the sky with the aim of detecting new exoplanets. A dimming of the visible…

The James Webb Space Telescope (JWST) will allow observations with a unique combination of spectral, spatial, and temporal resolution for the study of outer planet satellites within our Solar System. We highlight the infrared spectroscopy…

Because the planets of a system form in a flattened disk, they are expected to share similar orbital inclinations at the end of their formation. The high-precision photometric monitoring of stars known to host a transiting planet could thus…

Earth and Planetary Astrophysics · Physics 2015-05-18 M. Gillon , X. Bonfils , B. -O. Demory , S. Seager , D. Deming , A. H. M. J. Triaud

Large time-domain surveys, when of sufficient scale, provide a greatly increased probability of detecting rare and, in many cases, unexpected events. Indeed, it is these unpredicted and previously unobserved objects that can lead to some of…

Popular Physics · Physics 2017-03-31 Michael B. Lund

Searching for transits provides a very promising technique for finding close-in extra-solar planets. Transiting planets present the advantage of allowing one to determine physical properties such as mass and radius unambiguously. The…

A survey that can cover the sky in optical bands over wide fields to faint magnitudes with a fast cadence will enable many of the exciting science opportunities of the next decade. The Large Synoptic Survey Telescope (LSST) will have an…

Instrumentation and Methods for Astrophysics · Physics 2012-08-27 LSST Science Collaboration , Paul A. Abell , Julius Allison , Scott F. Anderson , John R. Andrew , J. Roger P. Angel , Lee Armus , David Arnett , S. J. Asztalos , Tim S. Axelrod , Stephen Bailey , D. R. Ballantyne , Justin R. Bankert , Wayne A. Barkhouse , Jeffrey D. Barr , L. Felipe Barrientos , Aaron J. Barth , James G. Bartlett , Andrew C. Becker , Jacek Becla , Timothy C. Beers , Joseph P. Bernstein , Rahul Biswas , Michael R. Blanton , Joshua S. Bloom , John J. Bochanski , Pat Boeshaar , Kirk D. Borne , Marusa Bradac , W. N. Brandt , Carrie R. Bridge , Michael E. Brown , Robert J. Brunner , James S. Bullock , Adam J. Burgasser , James H. Burge , David L. Burke , Phillip A. Cargile , Srinivasan Chandrasekharan , George Chartas , Steven R. Chesley , You-Hua Chu , David Cinabro , Mark W. Claire , Charles F. Claver , Douglas Clowe , A. J. Connolly , Kem H. Cook , Jeff Cooke , Asantha Cooray , Kevin R. Covey , Christopher S. Culliton , Roelof de Jong , Willem H. de Vries , Victor P. Debattista , Francisco Delgado , Ian P. Dell'Antonio , Saurav Dhital , Rosanne Di Stefano , Mark Dickinson , Benjamin Dilday , S. G. Djorgovski , Gregory Dobler , Ciro Donalek , Gregory Dubois-Felsmann , Josef Durech , Ardis Eliasdottir , Michael Eracleous , Laurent Eyer , Emilio E. Falco , Xiaohui Fan , Christopher D. Fassnacht , Harry C. Ferguson , Yanga R. Fernandez , Brian D. Fields , Douglas Finkbeiner , Eduardo E. Figueroa , Derek B. Fox , Harold Francke , James S. Frank , Josh Frieman , Sebastien Fromenteau , Muhammad Furqan , Gaspar Galaz , A. Gal-Yam , Peter Garnavich , Eric Gawiser , John Geary , Perry Gee , Robert R. Gibson , Kirk Gilmore , Emily A. Grace , Richard F. Green , William J. Gressler , Carl J. Grillmair , Salman Habib , J. S. Haggerty , Mario Hamuy , Alan W. Harris , Suzanne L. Hawley , Alan F. Heavens , Leslie Hebb , Todd J. Henry , Edward Hileman , Eric J. Hilton , Keri Hoadley , J. B. Holberg , Matt J. Holman , Steve B. Howell , Leopoldo Infante , Zeljko Ivezic , Suzanne H. Jacoby , Bhuvnesh Jain , R , Jedicke , M. James Jee , J. Garrett Jernigan , Saurabh W. Jha , Kathryn V. Johnston , R. Lynne Jones , Mario Juric , Mikko Kaasalainen , Styliani , Kafka , Steven M. Kahn , Nathan A. Kaib , Jason Kalirai , Jeff Kantor , Mansi M. Kasliwal , Charles R. Keeton , Richard Kessler , Zoran Knezevic , Adam Kowalski , Victor L. Krabbendam , K. Simon Krughoff , Shrinivas Kulkarni , Stephen Kuhlman , Mark Lacy , Sebastien Lepine , Ming Liang , Amy Lien , Paulina Lira , Knox S. Long , Suzanne Lorenz , Jennifer M. Lotz , R. H. Lupton , Julie Lutz , Lucas M. Macri , Ashish A. Mahabal , Rachel Mandelbaum , Phil Marshall , Morgan May , Peregrine M. McGehee , Brian T. Meadows , Alan Meert , Andrea Milani , Christopher J. Miller , Michelle Miller , David Mills , Dante Minniti , David Monet , Anjum S. Mukadam , Ehud Nakar , Douglas R. Neill , Jeffrey A. Newman , Sergei Nikolaev , Martin Nordby , Paul O'Connor , Masamune Oguri , John Oliver , Scot S. Olivier , Julia K. Olsen , Knut Olsen , Edward W. Olszewski , Hakeem Oluseyi , Nelson D. Padilla , Alex Parker , Joshua Pepper , John R. Peterson , Catherine Petry , Philip A. Pinto , James L. Pizagno , Bogdan Popescu , Andrej Prsa , Veljko Radcka , M. Jordan Raddick , Andrew Rasmussen , Arne Rau , Jeonghee Rho , James E. Rhoads , Gordon T. Richards , Stephen T. Ridgway , Brant E. Robertson , Rok Roskar , Abhijit Saha , Ata Sarajedini , Evan Scannapieco , Terry Schalk , Rafe Schindler , Samuel Schmidt , Sarah Schmidt , Donald P. Schneider , German Schumacher , Ryan Scranton , Jacques Sebag , Lynn G. Seppala , Ohad Shemmer , Joshua D. Simon , M. Sivertz , Howard A. Smith , J. Allyn Smith , Nathan Smith , Anna H. Spitz , Adam Stanford , Keivan G. Stassun , Jay Strader , Michael A. Strauss , Christopher W. Stubbs , Donald W. Sweeney , Alex Szalay , Paula Szkody , Masahiro Takada , Paul Thorman , David E. Trilling , Virginia Trimble , Anthony Tyson , Richard Van Berg , Daniel Vanden Berk , Jake VanderPlas , Licia Verde , Bojan Vrsnak , Lucianne M. Walkowicz , Benjamin D. Wandelt , Sheng Wang , Yun Wang , Michael Warner , Risa H. Wechsler , Andrew A. West , Oliver Wiecha , Benjamin F. Williams , Beth Willman , David Wittman , Sidney C. Wolff , W. Michael Wood-Vasey , Przemek Wozniak , Patrick Young , Andrew Zentner , Hu Zhan

We demonstrate that gravitational lensing can be used to discover and study planets in the habitable zones of nearby dwarf stars. If appropriate software is developed, a new generation of monitoring programs will automatically conduct a…

Astrophysics · Physics 2008-01-11 Rosanne Di Stefano , Christopher Night
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