An Ingot-like class of WaveFront Sensors for Laser Guide Stars

Fuente: arXiv
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Autori principali: Ragazzoni, Roberto, Portaluri, Elisa, Greggio, Davide, Dima, Marco, Arcidiacono, Carmelo, Bergomi, Maria, Di Filippo, Simone, Machado, Tania Sofia Gomes, Santhakumari, Kalyan Kumar Radhakrishnan, Viotto, Valentina, Battaini, Federico, Carolo, Elena, Chinellato, Simonetta, Farinato, Jacopo, Magrin, Demetrio, Marafatto, Luca, Umbriaco, Gabriele, Vassallo, Daniele
Natura: Preprint
Pubblicazione: 2024
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author Ragazzoni, Roberto
Portaluri, Elisa
Greggio, Davide
Dima, Marco
Arcidiacono, Carmelo
Bergomi, Maria
Di Filippo, Simone
Machado, Tania Sofia Gomes
Santhakumari, Kalyan Kumar Radhakrishnan
Viotto, Valentina
Battaini, Federico
Carolo, Elena
Chinellato, Simonetta
Farinato, Jacopo
Magrin, Demetrio
Marafatto, Luca
Umbriaco, Gabriele
Vassallo, Daniele
author_facet Ragazzoni, Roberto
Portaluri, Elisa
Greggio, Davide
Dima, Marco
Arcidiacono, Carmelo
Bergomi, Maria
Di Filippo, Simone
Machado, Tania Sofia Gomes
Santhakumari, Kalyan Kumar Radhakrishnan
Viotto, Valentina
Battaini, Federico
Carolo, Elena
Chinellato, Simonetta
Farinato, Jacopo
Magrin, Demetrio
Marafatto, Luca
Umbriaco, Gabriele
Vassallo, Daniele
contents Full sky coverage Adaptive Optics on Extremely Large Telescopes requires the adoption of several Laser Guide Stars as references.With such large apertures, the apparent elongation of the beacons is absolutely significant.With few exceptions,WaveFront Sensors designed for Natural Guide Stars are adapted and used in suboptimal mode in this context. We analyse and describe the geometrical properties of a class of WaveFront Sensors that are specifically designed to deal with Laser Guide Stars propagated from a location in the immediate vicinity of the telescope aperture. We describe in three dimensions the loci where the light of the Laser Guide Stars would focus in the focal volume located behind the focal plane (where astronomical objects are reimaged). We also describe the properties of several types of optomechanical devices that, through refraction and reflections, act as perturbers for this new class of pupil plane sensors, which we call ingot WaveFront Sensor. We give the recipes both for the most reasonable complex version of these WaveFront Sensors, with 6 pupils, and for the simplest one, with only 3 pupils. Both of them are referred to the ELT case. Elements to have a qualitative idea of how the sensitivity of such a new class of sensors compared to conventional ones are outlined. We present a new class of WaveFront Sensors, by carrying out the extension to the case of elongated sources at finite distance of the pyramid WaveFront Sensor and pointing out which advantages of the pyramid are retained and how it can be adopted to optimize the sensing.
format Preprint
id arxiv_https___arxiv_org_abs_2405_19415
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An Ingot-like class of WaveFront Sensors for Laser Guide Stars
Ragazzoni, Roberto
Portaluri, Elisa
Greggio, Davide
Dima, Marco
Arcidiacono, Carmelo
Bergomi, Maria
Di Filippo, Simone
Machado, Tania Sofia Gomes
Santhakumari, Kalyan Kumar Radhakrishnan
Viotto, Valentina
Battaini, Federico
Carolo, Elena
Chinellato, Simonetta
Farinato, Jacopo
Magrin, Demetrio
Marafatto, Luca
Umbriaco, Gabriele
Vassallo, Daniele
Instrumentation and Methods for Astrophysics
Full sky coverage Adaptive Optics on Extremely Large Telescopes requires the adoption of several Laser Guide Stars as references.With such large apertures, the apparent elongation of the beacons is absolutely significant.With few exceptions,WaveFront Sensors designed for Natural Guide Stars are adapted and used in suboptimal mode in this context. We analyse and describe the geometrical properties of a class of WaveFront Sensors that are specifically designed to deal with Laser Guide Stars propagated from a location in the immediate vicinity of the telescope aperture. We describe in three dimensions the loci where the light of the Laser Guide Stars would focus in the focal volume located behind the focal plane (where astronomical objects are reimaged). We also describe the properties of several types of optomechanical devices that, through refraction and reflections, act as perturbers for this new class of pupil plane sensors, which we call ingot WaveFront Sensor. We give the recipes both for the most reasonable complex version of these WaveFront Sensors, with 6 pupils, and for the simplest one, with only 3 pupils. Both of them are referred to the ELT case. Elements to have a qualitative idea of how the sensitivity of such a new class of sensors compared to conventional ones are outlined. We present a new class of WaveFront Sensors, by carrying out the extension to the case of elongated sources at finite distance of the pyramid WaveFront Sensor and pointing out which advantages of the pyramid are retained and how it can be adopted to optimize the sensing.
title An Ingot-like class of WaveFront Sensors for Laser Guide Stars
topic Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2405.19415