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- W4309288515 abstract "• The temperature sensitivity can be improved by controlling the axial and radial TECs. • The axial TEC of NCF is increased and radial TEC is suppressed to improve sensitivity. • The temperature sensitivity is improved to −355 pm/°C. • The sensor has the potential of refractive index sensing and biosensing. In this paper, a liquid sealed temperature sensor is assembled based on single-mode-no-core-single-mode (SNCS) optical fiber structure. Theoretical calculations and experiments verify the sensing characteristics of this structure. The structure improves the temperature sensitivity to −355 pm/°C by encapsulating an organic solvent with large thermal optical coefficient and using packaging material with large thermal expansion coefficient. The theoretical results are in good agreement with the experimental results. Theoretical simulations are completed on MATLAB using far from the cut-off condition. The SNCS structure is encapsulated in a microfluidic chamber by applying microfluidic processing technology. The axial thermal expansion coefficient of the no-core fiber (NCF) is increased and radial thermal expansion coefficient is suppressed by the polydimethylsiloxane (PDMS) mold stretching NCF to improve the temperature sensitivity. The enhancement effect of PDMS stretching NCF on temperature sensitivity is verified by contrast experiment. Due to the wrapping of PDMS, the sensor has strong resistance to mechanical damage and external interference." @default.
- W4309288515 created "2022-11-25" @default.
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- W4309288515 date "2022-12-01" @default.
- W4309288515 modified "2023-10-16" @default.
- W4309288515 title "The improvement of temperature sensitivity by controlling the thermal expansion coefficient of no-core fiber" @default.
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- W4309288515 doi "https://doi.org/10.1016/j.yofte.2022.103145" @default.
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