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Direct detection, also known as direct imaging, is a method for discovering and characterizing the atmospheres of planets at intermediate and wide separations. It is the only means of obtaining spectra of non-transiting exoplanets.…

Direct imaging and spectroscopy is the likely means by which we will someday identify, confirm, and characterize an Earth-like planet around a nearby Sun-like star. This Chapter summarizes the current state of knowledge regarding…

Earth and Planetary Astrophysics · Physics 2023-07-28 Thayne Currie , Beth Biller , Anne-Marie Lagrange , Christian Marois , Olivier Guyon , Eric Nielsen , Mickael Bonnefoy , Robert De Rosa

The aim of the Degenerate Objects around Degenerate Objects (DODO) survey is to search for very low mass brown dwarfs and extrasolar planets in wide orbits around white dwarfs via direct imaging. The direct detection of such companions…

Earth and Planetary Astrophysics · Physics 2011-04-05 E. Hogan , M. R. Burleigh , F. J. Clarke

Detection of forming planets means detection of the circumplanetary disk (CPD) in reality, since the planet is still surrounded by a disk at this evolutionary stage. Yet, no comprehensive CPD modeling was done in near-infrared wavelengths,…

Earth and Planetary Astrophysics · Physics 2019-05-22 J. Szulágyi , C. P. Dullemond , A. Pohl , S. P. Quanz

Starting in 2008, NASA has provided the exoplanet community an observational program aimed at obtaining the highest resolution imaging available as part of its mission to validate and characterize exoplanets, as well as their stellar…

Few spectra of directly-imaged exoplanets have been obtained in the mid-infrared (> 3 $\mu$m). This region is particularly rich in molecular spectral signatures, whose measurements can help recover atmospheric parameters and provide a…

The Planet Hunting and Asteroseismology Explorer Spectrophotometer, PHASES, is a concept for a space-borne instrument to obtain flux calibrated spectra and measure micro-magnitude photometric variations of nearby stars. The science drivers…

Instrumentation and Methods for Astrophysics · Physics 2010-01-13 Carlos del Burgo , Carlos Allende Prieto , Tully Peacocke

The mechanisms of planet formation are still under debate. We know little about how planets form, even if more than 4000 exoplanets have been detected to date. Recent investigations target the cot of newly born planets: the protoplanetary…

Earth and Planetary Astrophysics · Physics 2020-01-22 A. Zurlo , G. Cugno , M. Montesinos , H. Canovas , S. Casassus , V. Christiaens , L. Cieza , N. Huelamo , S. Perez

We consider current state of star formation theory and requirements to observations in millimeter and submillimeter ranges which are necessary for resolution of the most actual problems of the physics of star formation. Two key features of…

Astrophysics · Physics 2009-11-13 D. Z. Wiebe , M. S. Kirsanova , B. M. Shustov , Ya. N. Pavlyuchenkov

The overarching goal of planetary astronomy is to deduce how the present collection of objects found in our Solar System were formed from the original material present in the proto-solar nebula. As over two hundred exo-planetary systems are…

This paper provides an overview of the Low Frequency Instrument (LFI) programme within the ESA Planck mission. The LFI instrument has been developed to produce high precision maps of the microwave sky at frequencies in the range 27-77 GHz,…

Cosmology and Nongalactic Astrophysics · Physics 2015-05-18 N. Mandolesi , M. Bersanelli , R. C. Butler , E. Artal , C. Baccigalupi , A. Balbi , A. J. Banday , R. B. Barreiro , M. Bartelmann , K. Bennett , P. Bhandari , A. Bonaldi , J. Borrill , M. Bremer , C. Burigana , R. C. Bowman , P. Cabella , C. Cantalupo , B. Cappellini , T. Courvoisier , G. Crone , F. Cuttaia , L. Danese , O. D'Arcangelo , R. D. Davies , R. J. Davis , L. De Angelis , G. de Gasperis , A. De Rosa , G. De Troia , G. de Zotti , J. Dick , C. Dickinson , J. M. Diego , S. Donzelli , U. Dörl , X. Dupac , T. A. Enßlin , H. K. Eriksen , M. C. Falvella , F. Finelli , M. Frailis , E. Franceschi , T. Gaier , S. Galeotta , F. Gasparo , G. Giardino , F. Gomez , J. Gonzalez-Nuevo , K. M. Górski , A. Gregorio , A. Gruppuso , F. Hansen , R. Hell , D. Herranz , J. M. Herreros , S. Hildebrandt , W. Hovest , R. Hoyland , K. Huffenberger , M. Janssen , T. Jaffe , E. Keihänen , R. Keskitalo , T. Kisner , H. Kurki-Suonio , A. Lähteenmäki , C. R. Lawrence , S. M. Leach , J. P. Leahy , R. Leonardi , S. Levin , P. B. Lilje , M. López-Caniego , S. R. Lowe , P. M. Lubin , D. Maino , M. Malaspina , M. Maris , J. Marti-Canales , E. Martinez-Gonzalez , M. Massardi , S. Matarrese , F. Matthai , P. Meinhold , A. Melchiorri , L. Mendes , A. Mennella , G. Morgante , G. Morigi , N. Morisset , A. Moss , A. Nash , P. Natoli , R. Nesti , C. Paine , B. Partridge , F. Pasian , T. Passvogel , D. Pearson , L. Pérez-Cuevas , F. Perrotta , G. Polenta , L. A. Popa , T. Poutanen , G. Prezeau , M. Prina , J. P. Rachen , R. Rebolo , M. Reinecke , S. Ricciardi , T. Riller , G. Rocha , N. Roddis , R. Rohlfs , J. A. Rubiño-Martin , E. Salerno , M. Sandri , D. Scott , M. Seiffert , J. Silk , A. Simonetto , G. F. Smoot , C. Sozzi , J. Sternberg , F. Stivoli , L. Stringhetti , J. Tauber , L. Terenzi , M. Tomasi , J. Tuovinen , M. Türler , L. Valenziano , J. Varis , P. Vielva , F. Villa , N. Vittorio , L. Wade , M. White , S. White , A. Wilkinson , A. Zacchei , A. Zonca

The Gemini Planet Imager (GPI), a coronagraphic adaptive optics instrument designed for spectroscopy of extrasolar planets, had first light in 2013[13]. After five years, GPI has observed more than 500 stars, producing an extensive library…

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

A major goal of modern astrophysics is to understand the processes by which the universe evolved from its initial simplicity, as seen in measurements of the Cosmic Microwave Background, to the universe we see today, with complexity on all…

[Abridged] Context. Spectral differential imaging (SDI) is part of the observing strategy of current and future high-contrast imaging instruments. It aims to reduce the stellar speckles that prevent the detection of cool planets by using…

Earth and Planetary Astrophysics · Physics 2014-07-02 A. -L. Maire , A. Boccaletti , J. Rameau , G. Chauvin , A. -M. Lagrange , M. Bonnefoy , S. Desidera , M. Sylvestre , P. Baudoz , R. Galicher , D. Mouillet

The Low Frequency Instrument (LFI) of the "Planck Surveyor" ESA mission will perform high-resolution imaging of the Cosmic Microwave Background anisotropies at four frequencies in the 30-100 GHz range. We review the LFI main scientific…

Astrophysics · Physics 2019-08-14 N. Mandolesi , M. Bersanelli , C. Burigana , F. Villa

We present end-to-end simulations of SCALES, the third generation thermal-infrared diffraction limited imager and low/med-resolution integral field spectrograph (IFS) being designed for Keck. The 2-5 micron sensitivity of SCALES enables…

Instrumentation and Methods for Astrophysics · Physics 2021-10-29 Zackery Briesemeister , Steph Sallum , Andrew Skemer , R. Deno Stelter , Philip Hinz , Timothy Brandt

JWST's Near-Infrared Imager and Slitless Spectrograph (NIRISS) includes an Aperture Masking Interferometry (AMI) mode designed to be used between 2.7{\mu}m and 4.8{\mu}m. At these wavelengths, it will have the highest angular resolution of…

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