• Laser & Optoelectronics Progress
  • Vol. 55, Issue 12, 122301 (2018)
Yuanzhi Luo, Runling Peng*, and Zhijun Yu
Author Affiliations
  • School of Optical Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China
  • show less
    DOI: 10.3788/LOP55.122301 Cite this Article Set citation alerts
    Yuanzhi Luo, Runling Peng, Zhijun Yu. Structure Design and Analysis of Liquid Lens with Self-Zoom-Compensation[J]. Laser & Optoelectronics Progress, 2018, 55(12): 122301 Copy Citation Text show less
    Structure diagram of self-zoom-compensation lens
    Fig. 1. Structure diagram of self-zoom-compensation lens
    (a)-(b) Possible contact between the interface and ITO glass; (c)-(d) possible contact between two interfaces
    Fig. 2. (a)-(b) Possible contact between the interface and ITO glass; (c)-(d) possible contact between two interfaces
    Structure diagram of double-liquid lens
    Fig. 3. Structure diagram of double-liquid lens
    Relation curves of t1 or t2 and contact angle θ
    Fig. 4. Relation curves of t1 or t2 and contact angle θ
    Possible contact between two interfaces in the process of U1 and U2 changing. (a) Status 1; (b) status 2
    Fig. 5. Possible contact between two interfaces in the process of U1 and U2 changing. (a) Status 1; (b) status 2
    Beam path diagram of self-zoom-compensation lens
    Fig. 6. Beam path diagram of self-zoom-compensation lens
    Gauss structure diagrams of self-zoom-compensation lens. (a) Short-focus; (b) long-focus
    Fig. 7. Gauss structure diagrams of self-zoom-compensation lens. (a) Short-focus; (b) long-focus
    Schematics of maximum field of view in short-focus. (a) Aperture stop placed on the front aperture stop; (b) aperture stop placed in the rear aperture stop
    Fig. 8. Schematics of maximum field of view in short-focus. (a) Aperture stop placed on the front aperture stop; (b) aperture stop placed in the rear aperture stop
    Relation curve of field of view and the distance between aperture stop and first surface when aperture stop placed on the front aperture stop
    Fig. 9. Relation curve of field of view and the distance between aperture stop and first surface when aperture stop placed on the front aperture stop
    Relation curve of field of view and the distance between aperture stop and last surface when aperture stop placed in the rear aperture stop
    Fig. 10. Relation curve of field of view and the distance between aperture stop and last surface when aperture stop placed in the rear aperture stop
    Variation of field of view with zoom ratio
    Fig. 11. Variation of field of view with zoom ratio
    Yuanzhi Luo, Runling Peng, Zhijun Yu. Structure Design and Analysis of Liquid Lens with Self-Zoom-Compensation[J]. Laser & Optoelectronics Progress, 2018, 55(12): 122301
    Download Citation