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We used the Robo-AO laser adaptive optics system to image 99 main sequence and subgiant stars that have Kepler-detected asteroseismic signals. Robo-AO allows us to resolve blended secondary sources at separations as close as 0.15" that may…

MICADO is the Multi-AO Imaging Camera for Deep Observations, and it will be one of the first light instruments of the Extremely Large Telescope (ELT). Doing high precision multi-object differential astrometry behind ELT is particularly…

Adaptive optics (AO) is a powerful tool employed across various research fields, from aerospace to microscopy. Traditionally, AO has focused on correcting optical phase aberrations, with recent advances extending to polarisation…

Long-exposure spectro-polarimetry in the near-infrared is a preferred method to measure the magnetic field and other physical properties of solar prominences. In the past, it has been very difficult to observe prominences in this way with…

Instrumentation and Methods for Astrophysics · Physics 2015-08-11 G. E. Taylor , D. Schmidt , J. Marino , T. R. Rimmele , R. T. J. McAteer

The Max-Planck institutes for astronomy (MPIA) and for extraterrestrial physics (MPE) run an adaptive optics (AO) system with a laser guide star at the 3.5 m telescope on Calar Alto, Spain. This system, called ALFA, produces now scientific…

Instrumentation and Methods for Astrophysics · Physics 2016-07-20 Markus Kasper , Douglas Looze , Stefan Hippler , Ric Davies , Andreas Glindemann

Combinatorial optimization problems are central to science and engineering and specialized hardware from quantum annealers to classical Ising machines are being actively developed to address them. These systems typically sample from a fixed…

MORFEO (Multi-conjugate adaptive Optics Relay For ELT Observations, formerly MAORY), the MCAO system for the ELT, will provide diffraction-limited optical quality to the large field camera MICADO. MORFEO has officially passed the…

Instrumentation and Methods for Astrophysics · Physics 2024-06-06 Lorenzo Busoni , Guido Agapito , Alessandro Ballone , Alfio Puglisi , Alexander Goncharov , Amedeo Petrella , Amico Di Cianno , Andrea Balestra , Andrea Baruffolo , Andrea Bianco , Andrea Di Dato , Angelo Valentini , Benedetta Di Francesco , Benoit Sassolas , Bernardo Salasnich , Carmelo Arcidiacono , Cedric Plantet , Christian Eredia , Daniela Fantinel , Danilo Selvestrel , Deborah Malone , Demetrio Magrin , Domenico D'Auria , Edoardo Redaelli , Elena Carolo , Elia Costa , Elisa Portaluri , Enrico Cascone , Enrico Giro , Federico Battaini , Francesca Annibali , Fulvio Laudisio , Gabriele Rodeghiero , Gabriele Umbriaco , Gael Chauvin , Gianluca Di Rico , Giorgio Pariani , Giulia Carlà , Giulio Capasso , Giuseppe Cosentino , Jean Jacques Correia , Italo Foppiani , Ivan Di Antonio , Jacopo Farinato , Kalyan Kumar Radhakrishnan , Laurence Gluck , Laurent Pinard , Luca Marafatto , Marcello Agostino Scalera , Marco Gullieuszik , Marco Bonaglia , Marco Riva , Marco Xompero , Maria Bergomi , Matteo Aliverti , Matteo Genoni , Matteo Munari , Mauro Dolci , Michel Christophe , Michele Cantiello , Mirko Colapietro , Nicholas Devaney , Nicolò Azzaroli , Paolo Grani , Paolo Ciliegi , Patrick Rabou , Philippe Feautrier , Pietro Schipani , Roberto Ragazzoni , Rosanna Sordo , Runa Briguglio , Salvatore Lampitelli , Salvatore Savarese , Simone Benedetti , Simone Di Filippo , Simone Esposito , Simonetta Chinellato , Sylvain Oberti , Sylvain Rochat , Tommaso Lapucci , Ugo Di Giammatteo , Vincenzo Cianniello , Vincenzo De Caprio , Zoltan Hubert

Adaptive optics (AO) has revolutionized imaging in {fields} from astronomy to microscopy by correcting optical aberrations. In label-free microscopes, however, conventional AO faces limitations due to the absence of guidestar and the need…

We installed the next-generation automated laser adaptive optics system, Robo-AO-2, on the University of Hawaii 2.2-m telescope on Maunakea in 2023. We engineered Robo-AO-2 to deliver robotic, diffraction-limited observations at visible and…

The pyramid wavefront sensor (P-WFS) has replaced the Shack-Hartmann (SH-) WFS as sensor of choice for high performance adaptive optics (AO) systems in astronomy because of its flexibility in pupil sampling, its dynamic range, and its…

We report on the first observation of cosmologically distant field galaxies with an high order Adaptive Optics (AO) system on an 8-10 meter class telescope. Two galaxies were observed at 1.6 microns at an angular resolution as high as 50…

The performance of a wide-field adaptive optics system depends on input design parameters. Here we investigate the performance of a multi-conjugate adaptive optics system design for the European Extremely Large Telescope, using an…

Instrumentation and Methods for Astrophysics · Physics 2015-09-16 Alastair Basden

Large area surveys will dominate the forthcoming decades of astronomy and their success requires characterizing thousands of discoveries through additional observations at higher spatial or spectral resolution, and at complementary cadences…

Instrumentation and Methods for Astrophysics · Physics 2021-11-10 Christoph Baranec , Reed Riddle , Nicholas M. Law

Recent advances in adaptive optics (AO) have led to the implementation of wide field-of-view AO systems. A number of wide-field AO systems are also planned for the forthcoming Extremely Large Telescopes. Such systems have multiple wavefront…

PRIMA (The PRobe for-Infrared Mission for Astrophysics) is a concept for a far-infrared (IR) observatory. PRIMA features a cryogenically cooled 1.8 m diameter telescope and is designed to carry two science instruments enabling ultra-high…

Instrumentation and Methods for Astrophysics · Physics 2023-11-01 A. Moullet , T. Kataria , D. Lis , S. Unwin , Y. Hasegawa , E. Mills , C. Battersby , A. Roc , M. Meixner

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…

The Santa Cruz Extreme AO Lab (SEAL) is a new visible-wavelength testbed designed to advance the state of the art in wavefront control for high contrast imaging on large, segmented, ground-based telescopes. SEAL provides multiple options…

We present the integration status for `imaka, the ground-layer adaptive optics (GLAO) system on the University of Hawaii 2.2-meter telescope on Maunakea, Hawaii. This wide-field GLAO pathfinder system exploits Maunakea's highly confined…

We have started an initial three-year deployment of Robo-AO at the 2.1-m telescope at Kitt Peak, Arizona as of November 2015. We report here on the project status and two new developments with the Robo-AO KP system: the commissioning of a…

Instrumentation and Methods for Astrophysics · Physics 2016-08-11 Maissa Salama , Christoph Baranec , Rebecca Jensen-Clem , Reed Riddle , Dmitry Duev , Shrinivas Kulkarni , Nicholas M. Law

Pyramid wavefront sensors (PWFSs) are the preferred choice for current and future extreme adaptive optics (XAO) systems. Almost all instruments use the PWFS in its modulated form to mitigate its limited linearity range. However, this…