• DocumentCode
    1763249
  • Title

    Lensed Water-Core Teflon-Amorphous Fluoroplastics Optical Fiber

  • Author

    Chun-Yin Tang ; Gongxun Bai ; Kwok Lung Jim ; Xuming Zhang ; Kin Hung Fung ; Yang Chai ; Tsang, Yuen H. ; Jianquan Yao ; Degang Xu

  • Author_Institution
    Dept. of Appl. Phys., Hong Kong Polytech. Univ., Hong Kong, China
  • Volume
    32
  • Issue
    8
  • fYear
    2014
  • fDate
    41744
  • Firstpage
    1538
  • Lastpage
    1542
  • Abstract
    Specially designed liquid-core optical fiber can convey light with demand wavelength and analytes in the same pathway according to the application of the fiber. Water is one of the most useful and common core fluid due to its non- toxicity and other practical optical properties, and which makes water core optical fiber advantageous for biomedical sensing, optical imaging, non-linear optics and optical transmission. Since the numerical aperture of the liquid core fiber is not able to approach to an infinite small value, thus it is necessary to use expensive solid state lens to couple light into or out of the liquid core fiber. In this paper, we have demonstrated a unique method to fabricate water-core lensed fibers by filling light water and heavy water respectively into hollow Teflon-Amorphous Fluoroplastics fibers, and to control the focal length and the spot size by pumping water into or out of the fiber end. By simulation, the focal length over the range of f = 3.87-1.33 mm has been demonstrated using the distilled water, and f = 4.95-1.38 mm using the heavy water. To further reduce the focal length, we have limited the lens aperture by the fiber core and have demonstrated a focal length over f = 0.34-0.27 mm in response to the change of the heavy water lens volume from 0.68 to 1.54 nL. Further simulation shows that the focused spot size can be reduced to 2-6 μm by adjusting the refractive index and fiber geometry. Compared to other optical focusing methods, such lensed fiber and the tuning of its focal length are far easier to make at a much lower cost.
  • Keywords
    heavy water; lenses; optical fibre fabrication; optical polymers; optical tuning; plastics; refractive index; distilled water; fiber geometry; focal length tuning; heavy water lens volume; hollow teflon-amorphous fluoroplastics fibers; lens aperture; lensed water-core teflon-amorphous fluoroplastics optical fiber; light water; liquid-core optical fiber; refractive index; spot size; water-core lensed fiber fabrication; Apertures; Lenses; Liquids; Optical fibers; Optical refraction; Optical variables control; Lensed fibers; variable focal length; water-core optical fiber;
  • fLanguage
    English
  • Journal_Title
    Lightwave Technology, Journal of
  • Publisher
    ieee
  • ISSN
    0733-8724
  • Type

    jour

  • DOI
    10.1109/JLT.2014.2305167
  • Filename
    6739062