1 / 15

Liquid Crystal Elastomer Response to Light

Liquid Crystal Elastomer Response to Light. Rafael Soares Zola CPIP-LCI Advisor: Peter Palffy-Muhoray. Objectives . Observe the response of the Liquid Crystal Elastomer (LCE) to a source of light; Understand the key features of the Spatial Light Modulator (SLM);

rey
Download Presentation

Liquid Crystal Elastomer Response to Light

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Liquid Crystal Elastomer Response to Light Rafael Soares Zola CPIP-LCI Advisor: Peter Palffy-Muhoray

  2. Objectives • Observe the response of the Liquid Crystal Elastomer (LCE) to a source of light; • Understand the key features of the Spatial Light Modulator (SLM); • Use the SLM as a dynamic element; • Apply light with intensity varying with position and time on the sample;

  3. 4.0mm 7.5mm Background • Liquid Crystal Elastomer*: Rubber and Liquid Crystal! Doped Cross-Linker (12%) Mesogen Backbone azo dye Disperse Orange III *M. Camacho-Lopez, et al Nature Materials 3, 307 (2004).

  4. Background • Change in the degree of order: • cis-trans transition (Azo Dye) • temperature • The free energy of the elastomer coupling term liquid crystal rubber

  5. Background • SLM: Twisted Nematic cell used as dynamic element in experimental setups

  6. Background Transmissive SLM Number of pixels:832 x 624 Pixel pitch: 32m Image frame rate: max. 60Hz Active area: 26.6mm x 20.0mm Laser through Computer Image

  7. Capability of SLM

  8. Background • Intensity vs. gray level:

  9. Analyzer Lens Polarizer Mirror Argon Laser - CW - =514nm Camera Sample Filter 514nm Computer Setup

  10. Setup Microscope Objective SLM Camera Sample

  11. Results Ppump=15mW

  12. Results Ppump=15mW ttransition= 10s

  13. Results Ppump=43.73mW ttransition= 10s

  14. Conclusions • The SLM can be used to control the intensity over the sample spatially and temporally • This control allows one to move the LCE in some specific manner • Coordinated movements depends on accurate control of the beam over the sample

  15. Acknowledgements Especial Thanks for: Dr. Michele Moreira (muito obrigado mesmo!!) Jake Fontana Jeremy Neal

More Related