In this paper we describe the performances of a "push-pull" deformable minor (DM) which has the advantage of having a mirror membrane that can be attracted either from the back, as conventional electrostatic minors, or from the front. This technology has several advantages such as: doubled maximum defonnation, a better accuracy in phase mode reproduction, and bidirectional defonnation that allows closed loop operations without biasing. The key idea, when developing this push-pull defonnable mirror, was to have a good compromise benveen perfomiances and practical applicability for series production. An analysis of the constraints/practical limitations is described using simulations and laboratory tests. Following these results, we foresee the benefits of inserting the push-pull DM (Saturn. Adaptica Sri) in practical applications such as ophthalmology and microscopy. © 2012 SPIE.

Push-pull deformable mirror: Characterization and closed loop operations

Bonora Stefano;Frassetto Fabio;
2012

Abstract

In this paper we describe the performances of a "push-pull" deformable minor (DM) which has the advantage of having a mirror membrane that can be attracted either from the back, as conventional electrostatic minors, or from the front. This technology has several advantages such as: doubled maximum defonnation, a better accuracy in phase mode reproduction, and bidirectional defonnation that allows closed loop operations without biasing. The key idea, when developing this push-pull defonnable mirror, was to have a good compromise benveen perfomiances and practical applicability for series production. An analysis of the constraints/practical limitations is described using simulations and laboratory tests. Following these results, we foresee the benefits of inserting the push-pull DM (Saturn. Adaptica Sri) in practical applications such as ophthalmology and microscopy. © 2012 SPIE.
2012
Istituto di fotonica e nanotecnologie - IFN
Inglese
SPIE
8253
9780819488961
http://www.scopus.com/record/display.url?eid=2-s2.0-84859611728&origin=inward
Adaptive optics
Defonnable minor
Microscopy
Minor membrane
Ophthalmic optics
Ophthalmology
Optical engineering
10
none
Chinellato, S; Capraro, Ivan; Cardullo, Andrea; Acciari, A; Bonora, Stefano; Meneghini, G; Scalzotto, Villi; Trestino, C; Frassetto, Fabio; Occhipinti...espandi
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/279051
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