• Acta Optica Sinica
  • Vol. 41, Issue 8, 0823020 (2021)
Ying Liu, Jie Fan*, Jun Qi, Yonggang Zou, Haizhu Wang, Yongqin Hao, and Xiaohui Ma
Author Affiliations
  • State Key Laboratory of High Power Semiconductor Laser, Changchun University of Science and Technology, Changchun, Jilin 130022, China
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    DOI: 10.3788/AOS202141.0823020 Cite this Article Set citation alerts
    Ying Liu, Jie Fan, Jun Qi, Yonggang Zou, Haizhu Wang, Yongqin Hao, Xiaohui Ma. Theoretical Study on Light Field Coupling of Lateral Asymmetric Gratings[J]. Acta Optica Sinica, 2021, 41(8): 0823020 Copy Citation Text show less
    Schematic diagram of an unsynchronized coupled grating. (a) Three dimensional stereogram; (b) side view; (c) top view
    Fig. 1. Schematic diagram of an unsynchronized coupled grating. (a) Three dimensional stereogram; (b) side view; (c) top view
    Comparison between simulation and calculation of lateral asymmetric grating reflectance changes with different ridge widths. (a) w=20 μm; (b) w=5 μm; (c) w=2 μm
    Fig. 2. Comparison between simulation and calculation of lateral asymmetric grating reflectance changes with different ridge widths. (a) w=20 μm; (b) w=5 μm; (c) w=2 μm
    Transverse spot distribution at different positions of lateral asymmetric grating. (a1) (b1) Ⅰ; (a2)(b2) Ⅱ; (a3)(b3) Ⅲ; (a4)(b4) Ⅳ
    Fig. 3. Transverse spot distribution at different positions of lateral asymmetric grating. (a1) (b1) Ⅰ; (a2)(b2) Ⅱ; (a3)(b3) Ⅲ; (a4)(b4) Ⅳ
    Longitudinal optical field distribution in a resonator cavity of lateral asynchronous coupled DFB semiconductor laser. (a) Δz/Λ=0; (b) Δz/Λ=0.23; (c) Δz/Λ=0.43; (d) Δz/Λ=0.50; (e) Δz/Λ=0.58
    Fig. 4. Longitudinal optical field distribution in a resonator cavity of lateral asynchronous coupled DFB semiconductor laser. (a) Δz/Λ=0; (b) Δz/Λ=0.23; (c) Δz/Λ=0.43; (d) Δz/Λ=0.50; (e) Δz/Λ=0.58
    Relationship between grating reflectivity and ridge width. (a) Relationship between ridge width and grating reflectivity; (b) relationship between ridge width, asymmetric distance, and grating reflectivity (h=4 μm)
    Fig. 5. Relationship between grating reflectivity and ridge width. (a) Relationship between ridge width and grating reflectivity; (b) relationship between ridge width, asymmetric distance, and grating reflectivity (h=4 μm)
    Relationship between grating width, dislocation distance, and reflectivity (w=5 μm)
    Fig. 6. Relationship between grating width, dislocation distance, and reflectivity (w=5 μm)
    Relationship between grating duty cycle, dislocation distance, and reflectivity (w=2 μm; h=4 μm)
    Fig. 7. Relationship between grating duty cycle, dislocation distance, and reflectivity (w=2 μm; h=4 μm)
    Ying Liu, Jie Fan, Jun Qi, Yonggang Zou, Haizhu Wang, Yongqin Hao, Xiaohui Ma. Theoretical Study on Light Field Coupling of Lateral Asymmetric Gratings[J]. Acta Optica Sinica, 2021, 41(8): 0823020
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