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High precision differential astrometry assesses the positions, distances, and motions of celestial objects in relation to the stars. The focal plane of such space telescope must be calibrated with a precision down to the level of 1e-5 pixel…

天体物理仪器与方法 · 物理学 2024-10-30 Fabrice Pancher , Sebastien Soler , Fabien Malbet , Manon Lizzana , Pierre Kern , Thierry Lepine , Alain Leger

Planets emit thermal radiation and reflect incident light that they recieve from their host stars. As a planet orbits it's host star the photometric variations associated with these two effects produce very similar phase curves. If observed…

天体物理仪器与方法 · 物理学 2016-06-22 Ben Placek , Kevin H. Knuth , Daniel Angerhausen

Astrometric measurements of stellar systems are becoming significantly more precise and common, with many ground and space-based instruments and missions approaching 1 microarcsecond precision. We examine the multi-wavelength astrometric…

太阳与恒星天体物理 · 物理学 2015-06-04 Jeffrey L. Coughlin , Mercedes Lopez-Morales

The accuracy of theoretical mass, radius and effective temperature values for M-dwarf stars is an active topic of debate. Differences between observed and theoretical values have raised the possibility that current theoretical stellar…

The presence of minor bodies in exoplanetary systems is in most cases inferred through infra-red excesses, with the exception of exocomets. Even if over 35 years have passed since the first detection of exocomets around beta Pic, only ~ 25…

Measuring the orbits of directly-imaged exoplanets requires precise astrometry at the milliarcsec level over long periods of time due to their wide separation to the stars ($\gtrsim$10 au) and long orbital period ($\gtrsim$20 yr). To reach…

The NASA Discovery mission EPOXI, utilizing the Deep Impact flyby spacecraft, comprises two phases: EPOCh (Extrasolar Planet Observation and Characterization) and DIXI (Deep Impact eXtended Investigation). With EPOCh, we use the 30-cm high…

A dedicated mission to investigate exoplanetary atmospheres represents a major milestone in our quest to understand our place in the universe by placing our Solar System in context and by addressing the suitability of planets for the…

地球与行星天体物理 · 物理学 2015-06-03 G. Tinetti , J. P. Beaulieu , T. Henning , M. Meyer , G. Micela , I. Ribas , D. Stam , M. Swain , O. Krause , M. Ollivier , E. Pace , B. Swinyard , A. Aylward , R. van Boekel , A. Coradini , T. Encrenaz , I. Snellen , M. R. Zapatero-Osorio , J. Bouwman , J. Y-K. Cho , V. Coudé du Foresto , T. Guillot , M. Lopez-Morales , I. Mueller-Wodarg , E. Palle , F. Selsis , A. Sozzetti , P. A. R. Ade , N. Achilleos , A. Adriani , C. B. Agnor , C. Afonso , C. Allende Prieto , G. Bakos , R. J. Barber , M. Barlow , P. Bernath , B. Bezard , P. Bordé , L. R. Brown , A. Cassan , C. Cavarroc , A. Ciaravella , C. O. U. Cockell , A. Coustenis , C. Danielski , L. Decin , R. De Kok , O. Demangeon , P. Deroo , P. Doel , P. Drossart , L. N. Fletcher , M. Focardi , F. Forget , S. Fossey , P. Fouqué , J. Frith , M. Galand , P. Gaulme , J. I. González Hernández , O. Grasset , D. Grassi , J. L. Grenfell , M. J. Griffin , C. A. Griffith , U. Grözinger , M. Guedel , P. Guio , O. Hainaut , R. Hargreaves , P. H. Hauschildt , K. Heng , D. Heyrovsky , R. Hueso , P. Irwin , L. Kaltenegger , P. Kervella , D. Kipping , T. T. Koskinen , G. Kovács , A. La Barbera , H. Lammer , E. Lellouch , G. Leto , M. Lopez Morales , M. A. Lopez Valverde , M. Lopez-Puertas , C. Lovis , A. Maggio , J. P. Maillard , J. Maldonado Prado , J. B. Marquette , F. J. Martin-Torres , P. Maxted , S. Miller , S. Molinari , D. Montes , A. Moro-Martin , J. I. Moses , O. Mousis , N. Nguyen Tuong , R. Nelson , G. S. Orton , E. Pantin , E. Pascale , S. Pezzuto , D. Pinfield , E. Poretti , R. Prinja , L. Prisinzano , J. M. Rees , A. Reiners , B. Samuel , A. Sanchez-Lavega , J. Sanz Forcada , D. Sasselov , G. Savini , B. Sicardy , A. Smith , L. Stixrude , G. Strazzulla , J. Tennyson , M. Tessenyi , G. Vasisht , S. Vinatier , S. Viti , I. Waldmann , G. J. White , T. Widemann , R. Wordsworth , R. Yelle , Y. Yung , S. N. Yurchenko

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

SPICES (Spectro-Polarimetric Imaging and Characterization of Exoplanetary Systems) is a five-year M-class mission proposed to ESA Cosmic Vision. Its purpose is to image and characterize long-period extrasolar planets and circumstellar disks…

The Planetary Camera and Spectrograph (PCS) for the Extremely Large Telescope (ELT) will be dedicated to detecting and characterising nearby exoplanets with sizes from sub-Neptune to Earth-size in the neighbourhood of the Sun. This goal is…

Accurate astrometry is crucial for determining orbits of near-Earth-asteroids (NEAs) and therefore better tracking them. This paper reports on a demonstration of 10 milliarcsecond-level astrometric precision on a dozen NEAs using the Pomona…

The TESS follow-up of a large number of known transiting exoplanets provide unique opportunity to study their physical properties more precisely. Being a space-based telescope, the TESS observations are devoid of any noise component…

地球与行星天体物理 · 物理学 2025-11-25 Suman Saha

The K2 mission will make use of the Kepler spacecraft and its assets to expand upon Kepler's groundbreaking discoveries in the fields of exoplanets and astrophysics through new and exciting observations. K2 will use an innovative way of…

Precise exoplanet characterization requires precise classification of exoplanet host stars. The masses of host stars are commonly estimated by comparing their spectra to those predicted by stellar evolution models. However,…

太阳与恒星天体物理 · 物理学 2015-06-12 Benjamin T. Montet , John Asher Johnson

The Kepler Mission seeks to detect Earth-size planets transiting solar-like stars in its ~115 deg^2 field of view over the course of its 3.5 year primary mission by monitoring the brightness of each of ~156,000 Long Cadence stellar targets…

The Transiting Exoplanet Survey Satellite (TESS) is the first high-precision full-sky photometry survey in space. We present light curves from a magnitude limited set of stars and other stationary luminous objects from the TESS Full Frame…

Context: With no conclusive detection to date, the search for exomoons, satellites of planets orbiting other stars, remains a formidable challenge. Detecting these objects, compiling a population-level sample and constraining their…