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Optical Tuning of the Reflection of Cholesterics Doped with Azobenzene Liquid Crystals
Authors:U. A. Hrozhyk  S. V. Serak  N. V. Tabiryan  T. J. Bunning
Affiliation:1. Beam Engineering for Advanced Measurements Corporation, 809 South Orlando Ave., Suite I, Winter Park, FL 32789 (USA);2. Air Force Research Laboratory, Wright‐Patterson Air Force Base, OH 45433‐7707 (USA)
Abstract:Mixtures of cholesteric liquid crystals doped with high clearing temperature azobenzene nematic liquid crystals are shown to possess large, fast, and reversible dynamic photosensitive features. Selective wavelength shifts approaching 400 nm are reported, and depending on the host cholesteric liquid crystal, both red‐shifted and blue‐shifted wavelength changes can be induced. The photoinduced states of these material systems are shown to be stable for long periods of time upon removal of the radiation source, completely reversible, and dynamically fast. These phototunable features are demonstrated using both continuous wave (CW) and nanosecond laser beams. The latter is used to change the selective reflection wavelength from blue to green with a single nanosecond pulse and the ability to write information into these films using these processes are demonstrated.
Keywords:Azobenzenes  Liquid crystals, cholesteric  Photoresponsive materials
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