• Acta Optica Sinica
  • Vol. 41, Issue 13, 1306017 (2021)
Xiaochen Liu, Yan Xie, Yiqi Chen, Zijie Wang, Yang Yu, Yong Yang, Xiaobei Zhang*, and Tingyun Wang
Author Affiliations
  • Key Laboratory of Specialty Fiber Optics and Optical Access Networks, Joint International Research Laboratory of Specialty Fiber Optics and Advanced Communication, Shanghai University, Shanghai 200444, China
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    DOI: 10.3788/AOS202141.1306017 Cite this Article Set citation alerts
    Xiaochen Liu, Yan Xie, Yiqi Chen, Zijie Wang, Yang Yu, Yong Yang, Xiaobei Zhang, Tingyun Wang. Fiber Coupled Double Microsphere Resonator and Its Mode Splitting Characteristics[J]. Acta Optica Sinica, 2021, 41(13): 1306017 Copy Citation Text show less
    Schematic of fiber coupled double microsphere resonators, and diagrams of light propagation in microsphere resonators. (a) Schematic of fiber coupled double microsphere resonator; (b) light propagation in single microsphere resonator; (c) upper light propagation in double microsphere resonators; (d) lower light propagation in double microsphere resonators
    Fig. 1. Schematic of fiber coupled double microsphere resonators, and diagrams of light propagation in microsphere resonators. (a) Schematic of fiber coupled double microsphere resonator; (b) light propagation in single microsphere resonator; (c) upper light propagation in double microsphere resonators; (d) lower light propagation in double microsphere resonators
    Simulated reflectance spectra of single microsphere coupled resonator and double microsphere coupled resonators. (a) Single microsphere coupled resonator; (b) double microsphere coupled resonators
    Fig. 2. Simulated reflectance spectra of single microsphere coupled resonator and double microsphere coupled resonators. (a) Single microsphere coupled resonator; (b) double microsphere coupled resonators
    Schematic of splicing of SMF and capillary, placing the single microsphere resonator and double microsphere resonators into the capillary, and micrograph of the developed fiber coupled double microsphere resonators. (a) Schematic of splicing of SMF and capillary; (b) placing the single microsphere resonator into the capillary; (c) placing the double microsphere resonators into the capillary; (d) micrograph of the developed fiber coupled double microsphere resonators
    Fig. 3. Schematic of splicing of SMF and capillary, placing the single microsphere resonator and double microsphere resonators into the capillary, and micrograph of the developed fiber coupled double microsphere resonators. (a) Schematic of splicing of SMF and capillary; (b) placing the single microsphere resonator into the capillary; (c) placing the double microsphere resonators into the capillary; (d) micrograph of the developed fiber coupled double microsphere resonators
    Reflection spectrum measurement setup for fiber coupled double microsphere resonators
    Fig. 4. Reflection spectrum measurement setup for fiber coupled double microsphere resonators
    Reflection spectra of device without microsphere resonator, single microsphere coupled resonator, and double microsphere coupled resonators. (a) Reflection spectrum of device without microsphere resonator; (b) reflection spectrum of single microsphere coupled resonator; (c) reflection spectrum of double microsphere coupled resonators
    Fig. 5. Reflection spectra of device without microsphere resonator, single microsphere coupled resonator, and double microsphere coupled resonators. (a) Reflection spectrum of device without microsphere resonator; (b) reflection spectrum of single microsphere coupled resonator; (c) reflection spectrum of double microsphere coupled resonators
    FFT of reflection spectra of single microsphere coupled resonator and double microsphere coupled resonators. (a) FFT of reflection spectrum of single microsphere coupled resonator; (b) FFT of reflection spectrum of double microsphere coupled resonators
    Fig. 6. FFT of reflection spectra of single microsphere coupled resonator and double microsphere coupled resonators. (a) FFT of reflection spectrum of single microsphere coupled resonator; (b) FFT of reflection spectrum of double microsphere coupled resonators
    Reflection spectra and temperature response in the temperature increasing experiments. (a) Reflection spectra; (b) temperature response
    Fig. 7. Reflection spectra and temperature response in the temperature increasing experiments. (a) Reflection spectra; (b) temperature response
    Reflection spectra and temperature response in the temperature decreasing experiments. (a) Reflection spectra; (b) temperature response
    Fig. 8. Reflection spectra and temperature response in the temperature decreasing experiments. (a) Reflection spectra; (b) temperature response
    Xiaochen Liu, Yan Xie, Yiqi Chen, Zijie Wang, Yang Yu, Yong Yang, Xiaobei Zhang, Tingyun Wang. Fiber Coupled Double Microsphere Resonator and Its Mode Splitting Characteristics[J]. Acta Optica Sinica, 2021, 41(13): 1306017
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