• Chinese Optics Letters
  • Vol. 13, Issue 2, 020602 (2015)
Minning Ji1、*, Gang-Ding Peng2, and Yanhua Luo2
Author Affiliations
  • 1Institute of Fiber Optics, Key Laboratory of Specialty Fiber Optics and Optical Access Networks, School of Communication and Information Engineering, Shanghai University, Shanghai 201800, China
  • 2School of Electrical Engineering and Telecommunications, University of New South Wales, NSW 2052, Australia
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    DOI: 10.3788/COL201513.020602 Cite this Article Set citation alerts
    Minning Ji, Gang-Ding Peng, Yanhua Luo. Spin effect on a single-mode single-polarization optical fiber[J]. Chinese Optics Letters, 2015, 13(2): 020602 Copy Citation Text show less
    Ellipticity in a spun SMSP fiber.
    Fig. 1. Ellipticity in a spun SMSP fiber.
    Leakage loss of the elliptically polarized eigenmodes in a spun SMSP with α=0.1. Leakage loss is normalized by the cut-off mode leakage loss α of the un-spun fiber.
    Fig. 2. Leakage loss of the elliptically polarized eigenmodes in a spun SMSP with α=0.1. Leakage loss is normalized by the cut-off mode leakage loss α of the un-spun fiber.
    Extinction ratio in a spun SMSP fiber. Extinction ratio is normalized by the un-spun fiber.
    Fig. 3. Extinction ratio in a spun SMSP fiber. Extinction ratio is normalized by the un-spun fiber.
    Loss ratio between high-leakage and low-leakage elliptically polarized eigenmodes in a spun SMSP fiber.
    Fig. 4. Loss ratio between high-leakage and low-leakage elliptically polarized eigenmodes in a spun SMSP fiber.
    Loss ratio between high-leakage and low-leakage elliptically polarized eigenmodes with a normalized spin rate ranging from 0.2 to 0.35.
    Fig. 5. Loss ratio between high-leakage and low-leakage elliptically polarized eigenmodes with a normalized spin rate ranging from 0.2 to 0.35.
    Cross section of an SMSP fiber with a depressed elliptical inner cladding.
    Fig. 6. Cross section of an SMSP fiber with a depressed elliptical inner cladding.
    Extinction ratio spectrum of a spun SMSP fiber with different spin pitches.
    Fig. 7. Extinction ratio spectrum of a spun SMSP fiber with different spin pitches.
    Loss spectrum of the low-leakage eigenmode in a spun SMSP fiber with different spin pitches.
    Fig. 8. Loss spectrum of the low-leakage eigenmode in a spun SMSP fiber with different spin pitches.
    Loss ratio between high- and low-leakage eigenmodes in a spun SMSP fiber with different spin pitches.
    Fig. 9. Loss ratio between high- and low-leakage eigenmodes in a spun SMSP fiber with different spin pitches.
    Ellipticity of the elliptically polarized eigenmodes in a spun SMSP fiber with different spin pitches.
    Fig. 10. Ellipticity of the elliptically polarized eigenmodes in a spun SMSP fiber with different spin pitches.
    Transmitting power in a spun SMSP fiber. Spin pitch, Λ=13.8 mm; fiber length, L=0.23 m; input power, normalized as one unit.
    Fig. 11. Transmitting power in a spun SMSP fiber. Spin pitch, Λ=13.8mm; fiber length, L=0.23m; input power, normalized as one unit.
    Minning Ji, Gang-Ding Peng, Yanhua Luo. Spin effect on a single-mode single-polarization optical fiber[J]. Chinese Optics Letters, 2015, 13(2): 020602
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