• Laser & Optoelectronics Progress
  • Vol. 58, Issue 23, 2314002 (2021)
Jiao Song, Chao Jiang*, Wanmei Shen, Simei Sun**, Xiaoshan Guo, and Saiyu Wang
Author Affiliations
  • College of Physics and Electronic Science, Hubei Normal University, Huangshi, Hubei 435002, China
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    DOI: 10.3788/LOP202158.2314002 Cite this Article Set citation alerts
    Jiao Song, Chao Jiang, Wanmei Shen, Simei Sun, Xiaoshan Guo, Saiyu Wang. Strain Characteristic of Mach-Zehnder Interferometer Made of Multi-Core Fiber[J]. Laser & Optoelectronics Progress, 2021, 58(23): 2314002 Copy Citation Text show less
    Structural diagram and lightpath diagram of MZI. (a) Structural diagram; (b) lightpath diagram
    Fig. 1. Structural diagram and lightpath diagram of MZI. (a) Structural diagram; (b) lightpath diagram
    Transmission spectrum and spatial frequency spectrum of MZI. (a) Transmission spectrum; (b) spatial frequency spectrum
    Fig. 2. Transmission spectrum and spatial frequency spectrum of MZI. (a) Transmission spectrum; (b) spatial frequency spectrum
    Schematic diagrams of bending and axial strain experimental equipments and offset splicing section. (a) Schematic diagram of bending and axial strain experimental equipments; (b) schematic diagram of offset splicing section
    Fig. 3. Schematic diagrams of bending and axial strain experimental equipments and offset splicing section. (a) Schematic diagram of bending and axial strain experimental equipments; (b) schematic diagram of offset splicing section
    Position of Dip1 varying with C whenMZI bends to different directions. (a) 0°; (b) 90°; (c) 180°; (d) 270°
    Fig. 4. Position of Dip1 varying with C whenMZI bends to different directions. (a) 0°; (b) 90°; (c) 180°; (d) 270°
    Position of Dip1 varying with C whenMZI bends to direction of 45°
    Fig. 5. Position of Dip1 varying with C whenMZI bends to direction of 45°
    Central wavelength of Dip1 varying with C when MZI bends to different directions. (a) Four specific directions; (b) 45°
    Fig. 6. Central wavelength of Dip1 varying with C when MZI bends to different directions. (a) Four specific directions; (b) 45°
    Position and wavelength of Dip2 varying with C whenMZI bends to direction of 0°. (a) Position of Dip2 varying with C; (b) wavelength of Dip2 varying with C
    Fig. 7. Position and wavelength of Dip2 varying with C whenMZI bends to direction of 0°. (a) Position of Dip2 varying with C; (b) wavelength of Dip2 varying with C
    Position and wavelength of Dip1 varying with axial strain whenMZI bends to direction of 0°. (a) Position of Dip1 varying with axial strain; (b) wavelength of Dip1 varying with axial strain
    Fig. 8. Position and wavelength of Dip1 varying with axial strain whenMZI bends to direction of 0°. (a) Position of Dip1 varying with axial strain; (b) wavelength of Dip1 varying with axial strain
    Position and wavelength of Dip2 varying with axial strain whenMZI bends to direction of 0°. (a) Position of Dip2 varying with axial strain; (b) wavelength of Dip2 varying with axial strain
    Fig. 9. Position and wavelength of Dip2 varying with axial strain whenMZI bends to direction of 0°. (a) Position of Dip2 varying with axial strain; (b) wavelength of Dip2 varying with axial strain
    Relationship between wavelength and C in experiment of repeatability and stability
    Fig. 10. Relationship between wavelength and C in experiment of repeatability and stability
    Jiao Song, Chao Jiang, Wanmei Shen, Simei Sun, Xiaoshan Guo, Saiyu Wang. Strain Characteristic of Mach-Zehnder Interferometer Made of Multi-Core Fiber[J]. Laser & Optoelectronics Progress, 2021, 58(23): 2314002
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