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Optical performance of porous TiO 2 chiral thin films

  • Andy C. Van Popta
  • , Scott R. Kennedy
  • , Dirk J. Broer
  • , Jeremy C. Sit
  • , Michael J. Brett

    Research output: Chapter in Book/Report/Conference proceedingConference contributionAcademicpeer-review

    133 Downloads (Pure)

    Abstract

    Porous thin film structures have been fabricated by physical vapor deposition at an incident flux angle that was typically greater than 80°. This deposition technique, often called glancing angle deposition (GLAD), was used to create thin films composed of isolated helical columns. Modification of the deposition parameters was used to control the porosity, the handedness, and the pitch of the helical structure. The high porosity of the GLAD film (>50%) permits fluids, and in particular liquid crystals (LC), to be incorporated into the voids of the nanostructure. We present the results of a study assessing the effect of film material, chiral morphology, and liquid crystalline material on the optical performance of helical GLAD films. Films fabricated from TiO 2, a high refractive index material, exhibited strong optical rotation of linearly polarized light and selective reflection of circularly polarized light. By increasing the number of turns of the helix the chiral optical response was enhanced, and by tailoring the pitch of the helical columns, the wavelength-dependence of the reflection band was tuned to preferentially reflect red, green, or blue light.

    Original languageEnglish
    Title of host publicationLiquid Crystals VII
    PublisherSPIE
    Pages232-241
    Number of pages10
    DOIs
    Publication statusPublished - 23 Apr 2004
    EventOptical Science and Technology, SPIE'S 48th Annual Meeting - San Diego, United States
    Duration: 3 Aug 20033 Aug 2003
    Conference number: 48

    Publication series

    NameProceedings of SPIE
    PublisherSPIE
    Volume5213
    ISSN (Print)0277-786X

    Conference

    ConferenceOptical Science and Technology, SPIE'S 48th Annual Meeting
    Country/TerritoryUnited States
    CitySan Diego
    Period3/08/033/08/03

    Keywords

    • Chiral thin film
    • Glancing angle deposition
    • Liquid crystals
    • Optical activity
    • Selective reflectivity

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