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Ground-based telescopes coupled with adaptive optics (AO) have been playing a leading role in exoplanet direct imaging science and technological development for the past two decades and will continue to have an indispensable role for the…

Instrumentation techniques in the field of direct imaging of exoplanets have greatly advanced over the last two decades. Two of the four NASA-commissioned large concept studies involve a high-contrast instrument for the imaging and spectral…

Ground-based adaptive optics (AO) in the infrared has made exceptional advances in approaching space-like image quality at higher collecting area. Optical-wavelength applications are now also growing in scope. We therefore provide here a…

Direct detection and detailed characterization of exoplanets using extreme adaptive optics (ExAO) is a key science goal of future extremely large telescopes (ELTs). However, wavefront errors will limit the sensitivity of this endeavor.…

天体物理仪器与方法 · 物理学 2019-10-11 Benjamin L. Gerard , Christian Marois , Raphaël Galicher , Pierre Baudoz , Polychronis Patapis , Jonas Kühn

One of the primary goals of exoplanet science is to find and characterize habitable planets, and direct imaging will play a key role in this effort. Though imaging a true Earth analog is likely out of reach from the ground, the coming…

The detection of Earth-like exoplanets in the habitable zone of their stars, and their spectroscopic characterization in a search for biosignatures, requires starlight suppression that exceeds the current best ground-based performance by…

天体物理仪器与方法 · 物理学 2017-09-26 Brendan Crill , Nicholas Siegler

With the ever-growing number of exoplanets detected, the issue of characterization is becoming more and more relevant. Direct imaging is certainly the most efficient but the most challenging tool to probe the atmosphere of exoplanets and…

天体物理仪器与方法 · 物理学 2009-10-23 Boccaletti Anthony

Direct imaging and spectral characterization of exoplanets using extreme adaptive optics (ExAO) is a key science goal of future extremely large telescopes and space observatories. However, quasi-static wavefront errors will limit the…

天体物理仪器与方法 · 物理学 2018-08-29 Benjamin L. Gerard , Christian Marois , Raphaël Galicher

Exoplanet atmosphere characterization has seen revolutionary advances over the last few years, providing us with unique insights into atmospheric chemistry, dynamics and planet formation mechanisms. However, true solar system analog planets…

天体物理仪器与方法 · 物理学 2026-01-13 Joanna K. Barstow , Beth Biller , Mei Ting Mak , Sarah Rugheimer , Amaury Triaud , Hannah R. Wakeford

Adaptive optics (AO) have been used to correct wavefronts to achieve diffraction limited point spread functions in a broad range of optical applications, prominently ground-based astronomical telescopes operating in near infra-red. While…

天体物理仪器与方法 · 物理学 2018-10-03 Alexandre J. T. S. Mello , Antonin H. Bouchez , Andrew Szentgyorgyi , Marcos A. van Dam , Henrique Lupinari

Light from astronomical objects must travel through the earth's turbulent atmosphere before it can be imaged by ground-based telescopes. To enable direct imaging at maximum theoretical angular resolution, advanced techniques such as those…

One of the most exciting scientific challenges is to detect Earth-like planets in the habitable zones of other stars in the galaxy and search for evidence of life. The ability to observe and characterise dozens of potentially Earth-like…

Space-based direct imaging missions (HabEx, LUVOIR) would observe reflected light from exoplanets in the habitable zones of Sun-like stars. The ultimate---but not sole---goal of these concept missions is to characterize such planets.…

地球与行星天体物理 · 物理学 2019-05-01 Claire Marie Guimond , Nicolas B. Cowan

We summarize the high-resolution science that has been done on high redshift galaxies with Adaptive Optics (AO) on the world's largest ground-based facilities and with the Hubble Space Telescope (HST). These facilities complement each…

天体物理学 · 物理学 2008-11-26 R. A. Windhorst , N. P. Hathi , S. H. Cohen , R. A. Jansen , D. Kawata , S. P. Driver , B. Gibson

The Habitable Exoplanet Observatory, or HabEx, has been designed to be the Great Observatory of the 2030s. For the first time in human history, technologies have matured sufficiently to enable an affordable space-based telescope mission…

天体物理仪器与方法 · 物理学 2020-01-28 B. Scott Gaudi , Sara Seager , Bertrand Mennesson , Alina Kiessling , Keith Warfield , Kerri Cahoy , John T. Clarke , Shawn Domagal-Goldman , Lee Feinberg , Olivier Guyon , Jeremy Kasdin , Dimitri Mawet , Peter Plavchan , Tyler Robinson , Leslie Rogers , Paul Scowen , Rachel Somerville , Karl Stapelfeldt , Christopher Stark , Daniel Stern , Margaret Turnbull , Rashied Amini , Gary Kuan , Stefan Martin , Rhonda Morgan , David Redding , H. Philip Stahl , Ryan Webb , Oscar Alvarez-Salazar , William L. Arnold , Manan Arya , Bala Balasubramanian , Mike Baysinger , Ray Bell , Chris Below , Jonathan Benson , Lindsey Blais , Jeff Booth , Robert Bourgeois , Case Bradford , Alden Brewer , Thomas Brooks , Eric Cady , Mary Caldwell , Rob Calvet , Steven Carr , Derek Chan , Velibor Cormarkovic , Keith Coste , Charlie Cox , Rolf Danner , Jacqueline Davis , Larry Dewell , Lisa Dorsett , Daniel Dunn , Matthew East , Michael Effinger , Ron Eng , Greg Freebury , Jay Garcia , Jonathan Gaskin , Suzan Greene , John Hennessy , Evan Hilgemann , Brad Hood , Wolfgang Holota , Scott Howe , Pei Huang , Tony Hull , Ron Hunt , Kevin Hurd , Sandra Johnson , Andrew Kissil , Brent Knight , Daniel Kolenz , Oliver Kraus , John Krist , Mary Li , Doug Lisman , Milan Mandic , John Mann , Luis Marchen , Colleen Marrese-Reading , Jonathan McCready , Jim McGown , Jessica Missun , Andrew Miyaguchi , Bradley Moore , Bijan Nemati , Shouleh Nikzad , Joel Nissen , Megan Novicki , Todd Perrine , Claudia Pineda , Otto Polanco , Dustin Putnam , Atif Qureshi , Michael Richards , A. J. Eldorado Riggs , Michael Rodgers , Mike Rud , Navtej Saini , Dan Scalisi , Dan Scharf , Kevin Schulz , Gene Serabyn , Norbert Sigrist , Glory Sikkia , Andrew Singleton , Stuart Shaklan , Scott Smith , Bart Southerd , Mark Stahl , John Steeves , Brian Sturges , Chris Sullivan , Hao Tang , Neil Taras , Jonathan Tesch , Melissa Therrell , Howard Tseng , Marty Valente , David Van Buren , Juan Villalvazo , Steve Warwick , David Webb , Thomas Westerhoff , Rush Wofford , Gordon Wu , Jahning Woo , Milana Wood , John Ziemer , Giada Arney , Jay Anderson , Jesús Maíz-Apellániz , James Bartlett , Ruslan Belikov , Eduardo Bendek , Brad Cenko , Ewan Douglas , Shannon Dulz , Chris Evans , Virginie Faramaz , Y. Katherina Feng , Harry Ferguson , Kate Follette , Saavik Ford , Miriam García , Marla Geha , Dawn Gelino , Ylva Götberg , Sergi Hildebrandt , Renyu Hu , Knud Jahnke , Grant Kennedy , Laura Kreidberg , Andrea Isella , Eric Lopez , Franck Marchis , Lucas Macri , Mark Marley , William Matzko , Johan Mazoyer , Stephan McCandliss , Tiffany Meshkat , Christoph Mordasini , Patrick Morris , Eric Nielsen , Patrick Newman , Erik Petigura , Marc Postman , Amy Reines , Aki Roberge , Ian Roederer , Garreth Ruane , Edouard Schwieterman , Dan Sirbu , Christopher Spalding , Harry Teplitz , Jason Tumlinson , Neal Turner , Jessica Werk , Aida Wofford , Mark Wyatt , Amber Young , Rob Zellem

Future large space telescopes will be equipped with adaptive optics (AO) to overcome wavefront aberrations and achieve high contrast for imaging faint astronomical objects, such as earth-like exoplanets and debris disks. In contrast to AO…

天体物理仪器与方法 · 物理学 2020-01-07 He Sun , N. Jeremy Kasdin , Robert Vanderbei

Exoplanet detection and characterization through extreme adaptive optics (ExAO) is a key science goal of future extremely large telescopes. This achievement, however, will be limited in sensitivity by both quasi-static wavefront errors and…

地球与行星天体物理 · 物理学 2018-07-18 Benjamin L. Gerard , Christian Marois , Raphaël Galicher , Jean-Pierre Véran

Exoplanet science is booming. In 20 years our knowledge has expanded considerably, from the first discovery of a Hot Jupiter, to the detection of a large population of Neptunes and super-Earths, to the first steps toward the…

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…

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