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Related papers: A Near-Infrared Pyramid Wavefront Sensor for the M…

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The Provence Adaptive optics Pyramid Run System (PAPYRUS) is a pyramid-based Adaptive Optics (AO) system that will be installed at the Coude focus of the 1.52m telescope (T152) at the Observatoire de Haute Provence (OHP). The project is…

Adaptive optics systems correct atmospheric turbulence in real time. Most adaptive optics systems used routinely correct in the near infrared, at wavelengths greater than 1 micron. MagAO- X is a new extreme adaptive optics (ExAO) instrument…

Context. The new giant segmented mirror telescopes will use laser guide stars (LGS) for their adaptive optics (AO) systems. Two options to use as wavefront sensors (WFS) are the Shack-Hartmann wavefront sensor (SHWFS) and the pyramid…

Instrumentation and Methods for Astrophysics · Physics 2024-10-08 Francisco Oyarzun , Cedric-Taissir Heritier , Vincent Chambouleyron , Thierry Fusco , Paul Rouquette , Benoit Neichel

We describe the coronagraphic upgrade underway for the Mid-Infrared Array Camera-5 (MIRAC-5) to be used with the 6.5-m MMT telescope utilizing the new MMT Adaptive optics exoPlanet characterization System (MAPS). Mid-IR ground-based…

REDWOODS on ShaneAO at Lick Observatory implements a second-stage, 3-sided reflective pyramid wavefront sensor (PWFS), which, under low-light conditions, offers an improved signal-to-noise ratio for deformable mirror commands to correct…

Instrumentation and Methods for Astrophysics · Physics 2025-08-21 Joel Hurtado , Benjamin Gerard , Cesar Laguna , Dominic Francisco Sanchez

Current designs for all three extremely large telescopes show the overwhelming adoption of the pyramid wavefront sensor (P-WFS) as the WFS of choice for adaptive optics (AO) systems sensing on natural guide stars (NGS) or extended objects.…

We propose a design of an adaptive optics (AO) system for the high-resolution fiber-fed echelle spectrograph installed at the Nasmyth focus of the 6-m BTA telescope at the Special Astrophysical Observatory (SAO) of the Russian Academy of…

Instrumentation and Methods for Astrophysics · Physics 2022-08-17 Eduard Muslimov , Gennadiy Valyavin , Vincent Chambouleyron , Felipe Pedreros Bustos , Idir Boudjema

For natural guide start adaptive optics (AO) systems, pyramid wavefront sensors (PWFSs) can provide significant increase in sensitivity over the traditional Shack-Hartmann, but at the cost of a reduced linear range. When using a linear…

Instrumentation and Methods for Astrophysics · Physics 2023-12-05 Finn Archinuk , Rehan Hafeez , Sébastien Fabbro , Hossen Teimoorinia , Jean-Pierre Véran

The success of ground-based instruments for high contrast exoplanet imaging depends on the degree to which adaptive optics (AO) systems can mitigate atmospheric turbulence. While modern AO systems typically suffer from millisecond time lags…

Instrumentation and Methods for Astrophysics · Physics 2019-09-13 Rebecca Jensen-Clem , Charlotte Z. Bond , Sylvain Cetre , Eden McEwen , Peter Wizinowich , Sam Ragland , Dimitri Mawet , James Graham

Wavefront sensing and control are important for enabling one of the key advantages of using large apertures, namely higher angular resolutions. Pyramid wavefront sensors are becoming commonplace in new instrument designs owing to their…

Instrumentation and Methods for Astrophysics · Physics 2019-03-20 Julien Lozi , Nemanja Jovanovic , Olivier Guyon , Mark Chun , Shane Jacobson , Sean Goebel , Frantz Martinache

Astronomical observations often require the detection of faint signals in the presence of noise, and the near-infrared regime is no exception. In particular, where the application has short exposure time constraints, we are frequently and…

Instrumentation and Methods for Astrophysics · Physics 2019-11-13 James Gilbert , Alexey Grigoriev , Shanae King , Joice Mathew , Rob Sharp , Annino Vaccarella

Several telescopes include large Deformable Mirrors (DM) located directly inside the telescope. These adaptive telescopes trigger new constraints for the calibration of the Adaptive Optics (AO) systems as they usually offer no access to an…

Instrumentation and Methods for Astrophysics · Physics 2019-01-10 C. T. Heritier , S. Esposito , T. Fusco , B. Neichel , S. Oberti , R. Briguglio , G. Agapito , A. Puglisi , E. Pinna , P. -Y. Madec

In this paper we report on the laboratory experiment we settled in the Shanghai Astronomical Observatory (SHAO) to investigate the pyramid wavefront sensor (WFS) ability to measure the differential piston on a sparse aperture. The ultimate…

Instrumentation and Methods for Astrophysics · Physics 2016-08-08 Carmelo Arcidiacono , Xinyang Chen , Zhaojun Yan , Lixin Zheng , Guido Agapito , Chaoyan Wang , Nenghong Zhu , Liyun Zhu , Jianqing Cai , Zhenghong Tang

There have been no significant breakthroughs in infrared imagery since the hybridization of III-V or II-VI narrow-bandgap semiconductors on complementary metal-oxide semiconductor (CMOS) read-out integrated circuits (ROICs). The development…

Instrumentation and Methods for Astrophysics · Physics 2022-08-02 Philippe Feautrier , Jean-Luc Gach , Dan Owton , Matthew Hicks , Ian Baker , Keith Barnes , David Boutolleau

The Near-InfraRed Planet Searcher (NIRPS) is a high-resolution, high-stability near-infrared (NIR) spectrograph equipped with an AO system. Installed on the ESO 3.6-m telescope, it was developed to enable radial velocity (RV) measurements…

Instrumentation and Methods for Astrophysics · Physics 2025-07-30 Francois Bouchy , Rene Doyon , Francesco Pepe , Claudio Melo , Etienne Artigau , Lison Malo , Francois Wildi , Frederique Baron , Xavier Delfosse , Jose Renan De Medeiros , Rafael Rebolo , Nuno C. Santos , Gregg Wade , Romain Allart , Khaled Al Moulla , Nicolas Blind , Charles Cadieux , Bruno L. Canto Martins , Neil J. Cook , Xavier Dumusque , Yolanda Frensch , Frederic Genest , Jonay I. Gonzalez Hernandez , Nolan Grieves , Gaspare Lo Curto , Christophe Lovis , Lucile Mignon , Louise D. Nielsen , Anne-Sophie Poulin-Girard , Jose Luis Rasilla , Vladimir Reshetov , Danuta Sosnowska , Michael Sordet , Jonathan Saint-Antoine , Alejandro Suarez Mascareno , Simon Thibault , Philippe Vallee , Thomas Vandal , Manuel Abreu , Jose L. A. Aguiar , Guillaume Allain , Tomy Arial , Hugues Auger , Susana C. C. Barros , Luc Bazinet , Bjorn Benneke , Xavier Bonfils , Anne Boucher , Vincent Bourrier , Sebastien Bovay , Christopher Broeg , Denis Brousseau , Vincent Bruniquel , Marta Bryan , Alexandre Cabral , Andres Carmona , Yann Carteret , Zalpha Challita , Bruno Chazelas , Ryan Cloutier , Joao Coelho , Marion Cointepas , Uriel Conod , Nicolas B. Cowan , Eduardo Cristo , Joao Gomes da Silva , Laurie Dauplaise , Antoine Darveau-Bernier , Roseane de Lima Gomes , Daniel Brito de Freitas , Elisa Delgado-Mena , Jean-Baptiste Delisle , David Ehrenreich , Joao Faria , Pedro Figueira , Dasaev O. Fontinele , Thierry Forveille , Jonathan Gagne , Ludovic Genolet , Felix Gracia Temich , Olivier Hernandez , Melissa J. Hobson , Jens Hoeijmakers , Norbert Hubin , Farbod Jahandar , Ray Jayawardhana , Hans-Ulrich Kauf , Dan Kerley , Johann Kolb , Vigneshwaran Krishnamurthy , David Lafreniere , Pierrot Lamontagne , Pierre Larue , Henry Leath , Alexandrine L Heureux , Izan de Castro Leao , Olivia Lim , Allan M. Martins , Jaymie Matthews , Jean-Sebastien Mayer , Yuri S. Messias , Stan Metchev , Leslie Moranta , Christoph Mordasini , Dany Mounzer , Nicola Nari , Ares Osborn , Mathieu Ouellet , Jon Otegi , Lena Parc , Luca Pasquini , Vera M. Passegger , Stefan Pelletier , Celine Peroux , Caroline Piaulet-Ghorayeb , Mykhaylo Plotnykov , Emanuela Pompei , Jason Rowe , Mirsad Sarajlic , Alex Segovia , Julia Seidel , Damien Segransan , Robin Schnell , Ana Rita Costa Silva , Avidaan Srivastava , Valentina Vaulato , Atanas K. Stefanov , Marcio A. Teixeira , Stephane Udry , Joost P. Wardenier , Bachar Wehbe , Drew Weisserman , Vincent Yariv , Gerard Zins

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

For ExAO instruments for the Giant Segmented Mirror Telescopes (GSMTs), alternative architectures of WFS are under consideration because there is a tradeoff between detector size, speed, and noise that reduces the performance of GSMT-ExAO…

Extremely Large Telescopes have overwhelmingly opted for the Pyramid wavefront sensor (PyWFS) over the more widely used Shack-Hartmann WaveFront Sensor (SHWFS) to perform their Single Conjugate Adaptive Optics (SCAO) mode. The PyWFS, a…

Instrumentation and Methods for Astrophysics · Physics 2020-11-25 Vincent Chambouleyron , Olivier Fauvarque , Pierre Janin-Potiron , Carlos Correia , Jean-François Sauvage , Noah Schwartz , Benoît Neichel , Thierry Fusco

An Adaptive secondary mirror (ASM) allows for the integration of adaptive optics (AO) into the telescope itself. Adaptive secondary mirrors, based on hybrid variable reluctance (HVR) actuator technology, developed by TNO, provide a…

Wavefront sensors encode phase information of an incoming wavefront into an intensity pattern that can be measured on a camera. Several kinds of wavefront sensors (WFS) are used in astronomical adaptive optics. Amongst them, Fourier-based…