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      Azobenzene liquid crystalline materials for efficient optical switching with pulsed and/or continuous wave laser beams.

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          Abstract

          This study compares optical switching capabilities of liquid crystal (LC) materials based on different classes of azobenzene dyes. LCs based on molecules containing benzene rings with nearly symmetrical pi-pi conjugation respond more efficiently to a cw beam than to a nanosecond laser pulse and maintain the changes induced by the beam for tens of hours. Using azo dye molecules containing two benzene rings with push-pull pi-pi conjugation we demonstrate high photosensitivity to both a cw beam as well as nanosecond laser pulse with only 1 s relaxation of light-induced changes in material properties. Even faster, 1 ms restoration time is obtained for azo dye molecules containing hetaryl (benzothiazole) ring with enhanced push-pull pi-pi conjugation. These materials respond most efficiently to pulsed excitation while discriminating cw radiation.

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          Author and article information

          Journal
          Opt Express
          Optics express
          1094-4087
          1094-4087
          Apr 12 2010
          : 18
          : 8
          Affiliations
          [1 ] Beam Engineering for Advanced Measurements Co., 809 South Orlando Avenue, Suite I, Winter Park, FL 32789, USA.
          Article
          198022
          10.1364/OE.18.008697
          20588713
          1d5ef8ad-d4c4-4ade-90cd-6643c8142369
          History

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