AI Article Synopsis

  • The study focuses on a hysteretic deformable mirror that uses a continuous layer of piezoelectric material, which can be controlled through a matrix of electrodes.
  • A method to calculate the influence of each actuator is provided, taking into account the unique arrangement of these electrodes.
  • The research presents a semi-analytical model that demonstrates how a high-density array of actuators deforms the mirror's surface, along with simulation validation to identify optimal pressures for desired deformations.

Article Abstract

We present modeling and analysis of a hysteretic deformable mirror where the facesheet interacts with a continuous layer of piezoelectric material that can be actuated distributively by a matrix of electrodes through multiplexing. Moreover, a method to calculate the actuator influence functions is described considering the particular arrangement of electrodes. The results are presented in a semi-analytical model to describe the facesheet's deformation caused by a high-density array of actuators, and validated in a simulation. The proposed modeling of an interconnection layout of electrodes is used to determine the optimal pressures the actuators must exert to achieve a desired surface deformation.

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Source
http://dx.doi.org/10.1364/AO.397472DOI Listing

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