Photonics Research, 2017, 5 (5): 05000516, Published Online: Sep. 30, 2017   

Theoretical aspects and sensing demonstrations of cone-shaped inwall capillary-based microsphere resonators Download: 744次

Author Affiliations
1 Laboratory of Specialty Fiber Optics and Optical Access Networks, Shanghai Institute for Advanced Communication and Data Science, School of Communication and Information Engineering, Shanghai University, Shanghai 200072, China
2 Department of Electrical and Computer Engineering, Clemson University, Clemson, South Carolina 29634, USA
Abstract
In this paper, a detailed theoretical study on the characteristics of cone-shaped inwall capillary-based microsphere resonators is described and demonstrated for sensing applications. The maximum, minimum, slope, contrast, and width of the Fano resonance are analyzed. As the transmission coefficient of the capillary resonator increases, the absolute value of the slope of Fano resonances increases to reach its maximum, which is useful for sensors with an ultra-high sensitivity. There occurs another phenomenon of electromagnetically induced transparency when the reflectivity at the capillary–environment interface is close to 100%. We also experimentally demonstrated its capability for temperature and refractive index sensing, with a sensitivity of 10.9 pm/°C and 431 dB/RIU based on the Fano resonance and the Lorentzian line shape, respectively.

Xiaobei Zhang, Yong Yang, Huawen Bai, Jiawei Wang, Ming Yan, Hai Xiao, Tingyun Wang. Theoretical aspects and sensing demonstrations of cone-shaped inwall capillary-based microsphere resonators[J]. Photonics Research, 2017, 5(5): 05000516.

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