| Literature DB >> 33803684 |
Chi Li1,2, Meng Zhu1,2, Peng Ji1,2, Cong Xiong1,2, Changrui Liao1,2.
Abstract
A fiber optic whispering gallery mode (WGM) resonator was proposed and realized by integrating an inline polymer waveguide with a microsphere mounted on it. The polymer waveguide with a diameter of 1 μm was printed with femtosecond laser-assisted multiphoton polymerization in a section of a grooved hollow-core fiber, which was sandwiched between two single-mode fibers. Two WGW resonators assembled with microspheres of different sizes were prepared. The transmission spectra of those stimulated WGMs were investigated both in simulation and experimentally. The temperature response of the resonators was particularly studied, and a linear sensitivity of -593 pm/°C was achieved from 20 °C to 100 °C.Entities:
Keywords: fiber; resonators; temperature sensor; whispering gallery mode
Year: 2021 PMID: 33803684 PMCID: PMC8002858 DOI: 10.3390/mi12030318
Source DB: PubMed Journal: Micromachines (Basel) ISSN: 2072-666X Impact factor: 2.891
Figure 1Schematic diagram of the polymer fiber-integrated whispering gallery mode (WGM) resonator.
Figure 2Fabrication procedure for the proposed WGM resonator. (a) A fs-laser was employed to realize subtractive manufacturing (ablation) after a section of hollow-core fiber (HCF) spliced between two single-mode fibers (SMFs). (b) A polymer waveguide was printed by additive manufacturing (polymerization) assisted with a fs-laser to connect the two SMFs. The grating segment was similarly printed. (c) A microsphere was mounted upon the polymer waveguide to generate WGM resonance.
Figure 3Detected transmission spectra before and after mounting a microsphere with a diameter of (a) 20 μm and (b) 50 μm.
Figure 4Calculated transmission spectra of different WGM resonators for microspheres with a diameter of (a) 20 μm and (b) 50 μm.
Figure 5(a) Transmission spectra for the WGM resonator under different ambient temperatures for the case of a 20 μm microsphere. (b) Linear fit of the measured temperature response.