• Chinese Journal of Lasers
  • Vol. 50, Issue 14, 1406003 (2023)
Liner Zou*, Lei Shang, Xifei Yang, and Yun Shen
Author Affiliations
  • School of Physics and Materials Science, Nanchang University, Nanchang 330031, Jiangxi, China
  • show less
    DOI: 10.3788/CJL230438 Cite this Article Set citation alerts
    Liner Zou, Lei Shang, Xifei Yang, Yun Shen. Photosensitivity of As2S3 Chalcogenide Fiber with Axial Tension and Its Application in Writing Bragg Gratings[J]. Chinese Journal of Lasers, 2023, 50(14): 1406003 Copy Citation Text show less
    Experimental setup and measuring principle. (a) Schematic of experimental setup for measuring the photorefractive index change of chalcogenide optical fiber by applying tension along the axial direction; (b) displacement of oscillogram measured by OSA when light irradiates chalcogenide optical fiber for calculating the photorefractive index change
    Fig. 1. Experimental setup and measuring principle. (a) Schematic of experimental setup for measuring the photorefractive index change of chalcogenide optical fiber by applying tension along the axial direction; (b) displacement of oscillogram measured by OSA when light irradiates chalcogenide optical fiber for calculating the photorefractive index change
    Dependence of the photorefractive index change Δn of As2S3 fiber core on the illumination time under the light irradiation power of 10 mW. (a) Without tension; (b) with tension of 0.490 N
    Fig. 2. Dependence of the photorefractive index change Δn of As2S3 fiber core on the illumination time under the light irradiation power of 10 mW. (a) Without tension; (b) with tension of 0.490 N
    Dependence of the photorefractive index change Δn of As2S3 fiber core on the illumination time under the light irradiation power of 13 mW. (a) Without tension; (b) with tension of 0.490 N
    Fig. 3. Dependence of the photorefractive index change Δn of As2S3 fiber core on the illumination time under the light irradiation power of 13 mW. (a) Without tension; (b) with tension of 0.490 N
    Dependence of the photorefractive index change Δn of As2S3 fiber core on the illumination time under the light irradiation power of 11 mW. (a) With tension of 0.274 N; (b) with tension of 0.353 N
    Fig. 4. Dependence of the photorefractive index change Δn of As2S3 fiber core on the illumination time under the light irradiation power of 11 mW. (a) With tension of 0.274 N; (b) with tension of 0.353 N
    End face photos of tapered As2S3 glass fiber with small diameter. (a) Without coupling light; (b) with coupling light (end coupling, the central wavelength of 1550 nm)
    Fig. 5. End face photos of tapered As2S3 glass fiber with small diameter. (a) Without coupling light; (b) with coupling light (end coupling, the central wavelength of 1550 nm)
    Characterization of written Bragg grating without tension. (a) Dependence of the depth of Bragg transmission peak on exposure time; (b) transmission spectrum of Bragg grating with exposure time of 80 s
    Fig. 6. Characterization of written Bragg grating without tension. (a) Dependence of the depth of Bragg transmission peak on exposure time; (b) transmission spectrum of Bragg grating with exposure time of 80 s
    Characterization of written Bragg grating with tension of 0.196 N. (a) Dependence of the depth of Bragg transmission peak on exposure time; (b) transmission spectrum of Bragg grating with exposure time of 80 s
    Fig. 7. Characterization of written Bragg grating with tension of 0.196 N. (a) Dependence of the depth of Bragg transmission peak on exposure time; (b) transmission spectrum of Bragg grating with exposure time of 80 s
    Liner Zou, Lei Shang, Xifei Yang, Yun Shen. Photosensitivity of As2S3 Chalcogenide Fiber with Axial Tension and Its Application in Writing Bragg Gratings[J]. Chinese Journal of Lasers, 2023, 50(14): 1406003
    Download Citation