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The second-generation instrument SPHERE, dedicated to high-contrast imaging, will soon be in operation on the European Very Large Telescope. Such an instrument relies on an extreme adaptive optics system coupled with a coronagraph that…

Instrumentation and Methods for Astrophysics · Physics 2015-06-22 B. Paul , J. -F. Sauvage , L. M. Mugnier , K. Dohlen , C. Petit , T. Fusco , D. Mouillet , J. -L. Beuzit , M. Ferrari

The optimization and scheduling of scientific observations done with instrumentation supported by adaptive optics could greatly benefit from the forecast of PSF figures of merit (FWHM, Strehl Ratio, Encircle Energy and contrast), that…

Instrumentation and Methods for Astrophysics · Physics 2020-12-15 A. Turchi , G. Agapito , E. Masciadri , O. Beltramo-Martin , E. Pinna , J. F. Sauvage , T. Fusco , B. Neichel , J. Milli

Optical imperfections, misalignments, aberrations, and even dust can significantly limit sensitivity in high-contrast imaging systems such as coronagraphs. An upstream deformable mirror (DM) in the pupil can be used to correct or compensate…

Instrumentation and Methods for Astrophysics · Physics 2015-06-15 Johanan L. Codona , Matthew Kenworthy

The maintenance of primary mirror segment co-phasing is a critical aspect to the operation of segmented telescopes. However, speckle-based measurements of the phasing of the Keck primary have estimated semi-static surface aberrations of…

Instrumentation and Methods for Astrophysics · Physics 2025-03-05 Benjamin Calvin , Michael Fitzgerald

The Multi Unit Spectroscopic Explorer (MUSE) is an integral field spectrograph on the Very Large Telescope Unit Telescope 4, capable of laser guide star assisted and tomographic adaptive optics using the GALACSI module. Its observing…

Instrumentation and Methods for Astrophysics · Physics 2022-09-19 T. Wevers , F. J. Selman , A. Reyes , M. Vega , J. Hartke , F. Bian , O. Beltramo-Martin , R. Fétick , S. Kamann , J. Kolb , T. Kravtsov , C. Moya , B. Neichel , S. Oberti , C. Reyes , E. Valenti

The ESPRESSO instrument, to be commissioned in the next months at the ESO VLT, is bound to became a landmark in the field of high-resolution optical spectroscopy, both for its ground-breaking science objectives (search for Earth-like…

Instrumentation and Methods for Astrophysics · Physics 2018-08-14 Guido Cupani , Giorgio Calderone , Stefano Cristiani , Valentina D'Odorico , Giuliano Taffoni

Users of astronomical observatories rely on Exposure Time Calculators (ETC) to prepare their proposals and then their observations. The ETC is therefore a crucial element in an observatory's data workflow and in particular is key to…

Instrumentation and Methods for Astrophysics · Physics 2024-07-04 Henri M. J. Boffin , Jakob Vinther , Gurvan Bazin , David Huerta , Yves Jung , Lars K. Lundin , Malgorzata Stellert

Opportunistic Spatial Orthogonalization (OSO) is a cognitive radio scheme that allows the existence of secondary users and hence increases the system throughput, even if the primary user occupies all the frequency bands all the time.…

Information Theory · Computer Science 2009-04-29 Cong Shen , Michael P. Fitz

A large fraction of the present-day stellar mass was formed between z=0.5 and z~3 and our understanding of the formation mechanisms at work at these epochs requires both high spatial and high spectral resolution: one shall simultaneously}…

PLATO 2.0 has recently been selected for ESA's M3 launch opportunity (2022/24). Providing accurate key planet parameters (radius, mass, density and age) in statistical numbers, it addresses fundamental questions such as: How do planetary…

Earth and Planetary Astrophysics · Physics 2015-06-17 H. Rauer , C. Catala , C. Aerts , T. Appourchaux , W. Benz , A. Brandeker , J. Christensen-Dalsgaard , M. Deleuil , L. Gizon , M. -J. Goupil , M. Güdel , E. Janot-Pacheco , M. Mas-Hesse , I. Pagano , G. Piotto , D. Pollacco , N. C. Santos , A. Smith , J. -C. , Suárez , R. Szabó , S. Udry , V. Adibekyan , Y. Alibert , J. -M. Almenara , P. Amaro-Seoane , M. Ammler-von Eiff , M. Asplund , E. Antonello , W. Ball , S. Barnes , F. Baudin , K. Belkacem , M. Bergemann , G. Bihain , A. C. Birch , X. Bonfils , I. Boisse , A. S. Bonomo , F. Borsa , I. M. Brandão , E. Brocato , S. Brun , M. Burleigh , R. Burston , J. Cabrera , S. Cassisi , W. Chaplin , S. Charpinet , C. Chiappini , R. P. Church , Sz. Csizmadia , M. Cunha , M. Damasso , M. B. Davies , H. J. Deeg , R. F. DÍaz , S. Dreizler , C. Dreyer , P. Eggenberger , D. Ehrenreich , P. Eigmüller , A. Erikson , R. Farmer , S. Feltzing , F. de Oliveira Fialho , P. Figueira , T. Forveille , M. Fridlund , R. A. García , P. Giommi , G. Giuffrida , M. Godolt , J. Gomes da Silva , T. Granzer , J. L. Grenfell , A. Grotsch-Noels , E. Günther , C. A. Haswell , A. P. Hatzes , G. Hébrard , S. Hekker , R. Helled , K. Heng , J. M. Jenkins , A. Johansen , M. L. Khodachenko , K. G. Kislyakova , W. Kley , U. Kolb , N. Krivova , F. Kupka , H. Lammer , A. F. Lanza , Y. Lebreton , D. Magrin , P. Marcos-Arenal , P. M. Marrese , J. P. Marques , J. Martins , S. Mathis , S. Mathur , S. Messina , A. Miglio , J. Montalban , M. Montalto , M. J. P. F. G. Monteiro , H. Moradi , E. Moravveji , C. Mordasini , T. Morel , A. Mortier , V. Nascimbeni , R. P. Nelson , M. B. Nielsen , L. Noack , A. J. Norton , A. Ofir , M. Oshagh , R. -M. Ouazzani , P. Pápics , V. C. Parro , P. Petit , B. Plez , E. Poretti , A. Quirrenbach , R. Ragazzoni , G. Raimondo , M. Rainer , D. R. Reese , R. Redmer , S. Reffert , B. Rojas-Ayala , I. W. Roxburgh , S. Salmon , A. Santerne , J. Schneider , J. Schou , S. Schuh , H. Schunker , A. Silva-Valio , R. Silvotti , I. Skillen , I. Snellen , F. Sohl , S. G. Sousa , A. Sozzetti , D. Stello , K. G. Strassmeier , M. Švanda , Gy. M. Szabó , A. Tkachenko , D. Valencia , V. van Grootel , S. D. Vauclair , P. Ventura , F. W. Wagner , N. A. Walton , J. Weingrill , S. C. Werner , P. J. Wheatley , K. Zwintz

We demonstrate a novel architecture for Adaptive Optics (AO) control based on FPGAs (Field Programmable Gate Arrays), making active use of their configurable parallel processing capability. SPARC's unique capabilities are demonstrated…

Instrumentation and Methods for Astrophysics · Physics 2018-08-03 Avinash Surendran , Mahesh P. Burse , A. N. Ramaprakash , Jyotirmay Paul , Hillol K. Das , Padmakar S. Parihar

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

With the commissioning of the refurbished adaptive secondary mirror (ASM) for the 6.5-meter MMT Observatory under way, special consideration had to be made to properly calibrate the mirror response functions to generate an interaction…

Instrumentation and Methods for Astrophysics · Physics 2024-08-14 Jacob Taylor , Robin Swanson , Parker Levesque , Masen Lamb , Amali Vaz , Manny Montoya , Andrew Gardner , Katie M. Morzinski , Suresh Sivanandam

Context. Direct imaging of exoplanets takes advantage of state-of-the-art adaptive optics (AO) systems, coronagraphy, and post-processing techniques. Coronagraphs attenuate starlight to mitigate the unfavorable flux ratio between an…

Instrumentation and Methods for Astrophysics · Physics 2022-09-21 Axel Potier , Johan Mazoyer , Zahed Wahhaj , Pierre Baudoz , Gael Chauvin , Raphael Galicher , Garreth Ruane

Modern ground-based telescopes rely on a technology called adaptive optics (AO) in order to compensate for the loss of image quality caused by atmospheric turbulence. Next-generation AO systems designed for a wide field of view require a…

Numerical Analysis · Mathematics 2015-11-24 Tapio Helin , Stefan Kindermann , Daniela Saxenhuber

Adaptive optics (AO) is a powerful image correction technique with proven benefits for many life-science microscopy methods. However, the complexity of adding a reflective wavefront modulator and a wavefront sensor into already complicated…

The upcoming Extremely Large Telescopes (ELTs) are expected to have the collecting area required to detect potential biosignature gases such as molecular oxygen, $\mathrm{O_2}$, in the atmosphere of terrestrial planets around nearby stars.…

Instrumentation and Methods for Astrophysics · Physics 2023-10-18 Surangkhana Rukdee , Sagi Ben-Ami , Mercedes López-Morales , Andrew Szentgyorgyi , David Charbonneau , Juliana García-Mejía , Johannes Buchner

Advanced AO systems will likely utilise Pyramid wave-front sensors (PWFS) over the traditional Shack-Hartmann sensor in the quest for increased sensitivity, peak performance and ultimate contrast. Here, we wish to bring knowledge and…

Instrumentation and Methods for Astrophysics · Physics 2020-06-17 Carlos M. Correia , Olivier Fauvarque , Charlotte Z. Bond , Vincent Chambouleyron , Jean-Francois Sauvage , Thierry Fusco

The next-generation space VLBI mission, VSOP-2, is expected to provide unprecedented spatial resolutions at 8.4, 22, and 43GHz. In this report, phase referencing with VSOP-2 is examined in detail based on a simulation tool called ARIS. The…

PALM-3000 (P3K), the second generation adaptive optics (AO) instrument for the 5.1 meter Hale telescope at Palomar Observatory, was released as a facility class instrument in October 2011 and has since been used on-sky for over 600 nights…