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      Shack-Hartmann wavefront sensor with large dynamic range by adaptive spot search method.

      , ,
      Applied optics
      Optica Publishing Group

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          Abstract

          A Shack-Hartmann wavefront sensor (SHWFS) that consists of a microlens array and an image sensor has been used to measure the wavefront aberrations of human eyes. However, a conventional SHWFS has finite dynamic range depending on the diameter of the each microlens. The dynamic range cannot be easily expanded without a decrease of the spatial resolution. In this study, an adaptive spot search method to expand the dynamic range of an SHWFS is proposed. In the proposed method, spots are searched with the help of their approximate displacements measured with low spatial resolution and large dynamic range. By the proposed method, a wavefront can be correctly measured even if the spot is beyond the detection area. The adaptive spot search method is realized by using the special microlens array that generates both spots and discriminable patterns. The proposed method enables expanding the dynamic range of an SHWFS with a single shot and short processing time. The performance of the proposed method is compared with that of a conventional SHWFS by optical experiments. Furthermore, the dynamic range of the proposed method is quantitatively evaluated by numerical simulations.

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          Author and article information

          Journal
          Appl Opt
          Applied optics
          Optica Publishing Group
          1539-4522
          1559-128X
          Jul 10 2016
          : 55
          : 20
          Article
          345333
          10.1364/AO.55.005413
          27409319
          2b3ce7f5-69a9-4bb0-a16f-10350cf5b776
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