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Development of a Piezoelectric Adaptive Mirror for Laser Beam Control

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dc.contributor.author Long, Craig S
dc.contributor.author Loveday, Philip W
dc.contributor.author Forbes, A
dc.date.accessioned 2008-08-18T09:44:10Z
dc.date.available 2008-08-18T09:44:10Z
dc.date.issued 2008-06
dc.identifier.citation Long, CS, Loveday, PW and Forbes, A. Development of a Piezoelectric Adaptive Mirror for Laser Beam Control. ACTUATOR 2008, 11th International Conference on New Actuators, Bremen, Germany, 584 9 – 11 June 2008, pp 584-587 en
dc.identifier.uri http://hdl.handle.net/10204/2389
dc.description Copyright: Messe Bremen, ACTUATOR, 2008 en
dc.description.abstract An intra-cavity adaptive mirror is developed for compensation of time-dependent phase aberrations to a laser beam, such as those caused by thermal lensing. The unimorph-type device consists of a metallic disc, with a mirror finish, bonded to a piezoelectric disc, providing a small, low-cost deformable mirror for this application. The mirror is required to be able to deform in the shape of each of the lower order Zernike polynomials, which describe aberrations in optical systems. Numerical modelling is employed to predict the deformation shapes that can be achieved by a unimorph mirror with a particular electrode pattern. The results from a Rayleigh-Ritz model and a finite element model, employing elements including rotational degrees of freedom, are compared to results from a conventional finite element model. The finite element model is applied to model a prototype deformable mirror and produced good agreement with experimental results. Finally, a mathematical optimization routine is proposed to predict the optimal electrode configuration on the free electrode. en
dc.language.iso en en
dc.publisher HVG Hanseatische Veranstaltungs-GmbH en
dc.subject Deformable mirror en
dc.subject Laser beam control en
dc.subject Piezoelectric unimorph en
dc.subject ACTUATOR en
dc.title Development of a Piezoelectric Adaptive Mirror for Laser Beam Control en
dc.type Other Material en
dc.identifier.apacitation Long, C. S., Loveday, P. W., & Forbes, A. 2008. <i>Development of a Piezoelectric Adaptive Mirror for Laser Beam Control.</i> http://hdl.handle.net/10204/2389 en_ZA
dc.identifier.chicagocitation Long, Craig S, Philip W Loveday, and A Forbes. 2008. <i>Development of a Piezoelectric Adaptive Mirror for Laser Beam Control.</i> http://hdl.handle.net/10204/2389 en_ZA
dc.identifier.vancouvercitation Long CS, Loveday PW, Forbes A. 2008. <i>Development of a Piezoelectric Adaptive Mirror for Laser Beam Control.</i> http://hdl.handle.net/10204/2389 en_ZA
dc.identifier.ris TY - Other Material AU - Long, Craig S AU - Loveday, Philip W AU - Forbes, A AB - An intra-cavity adaptive mirror is developed for compensation of time-dependent phase aberrations to a laser beam, such as those caused by thermal lensing. The unimorph-type device consists of a metallic disc, with a mirror finish, bonded to a piezoelectric disc, providing a small, low-cost deformable mirror for this application. The mirror is required to be able to deform in the shape of each of the lower order Zernike polynomials, which describe aberrations in optical systems. Numerical modelling is employed to predict the deformation shapes that can be achieved by a unimorph mirror with a particular electrode pattern. The results from a Rayleigh-Ritz model and a finite element model, employing elements including rotational degrees of freedom, are compared to results from a conventional finite element model. The finite element model is applied to model a prototype deformable mirror and produced good agreement with experimental results. Finally, a mathematical optimization routine is proposed to predict the optimal electrode configuration on the free electrode. DA - 2008-06 DB - ResearchSpace DP - CSIR KW - Deformable mirror KW - Laser beam control KW - Piezoelectric unimorph KW - ACTUATOR LK - https://researchspace.csir.co.za PY - 2008 T1 - Development of a Piezoelectric Adaptive Mirror for Laser Beam Control TI - Development of a Piezoelectric Adaptive Mirror for Laser Beam Control UR - http://hdl.handle.net/10204/2389 ER - en_ZA


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