Golant E I, Pashkovskii A B, Golant K M
Appl Opt. 2020 Oct 10;59(29):9254-9258. doi: 10.1364/AO.401495.
The results of the rigorous calculation of mode fields in double adiabatic, single-mode etched-out optical fiber tapers coated with thin indium tin oxide films are discussed in the context of their application as environment refractive index sensors. It is shown that at only two particular thicknesses covering the homogeneous section of the taper ITO film about 100 nm and 177 nm, the lossy mode resonance is observed in the wavelength range of 1.50-1.55 µm. Moreover, the sensitivity of a sensor based on a 177 nm coating is significantly higher, and the resonance width is significantly lower than that of a sensor with a 100 nm coating. Optimal from the viewpoint of the figure of merit, values for the diameter of a homogeneous section of the etched fiber are defined.
在将双绝热、单模蚀刻光纤锥涂覆薄氧化铟锡薄膜用作环境折射率传感器的应用背景下,讨论了对其模式场进行严格计算的结果。结果表明,仅在覆盖光纤锥ITO薄膜均匀部分的两个特定厚度(约100 nm和177 nm)下,在1.50 - 1.55 µm波长范围内观察到有损模式共振。此外,基于177 nm涂层的传感器的灵敏度显著更高,且共振宽度明显低于基于100 nm涂层的传感器。从品质因数的角度定义了蚀刻光纤均匀部分的最佳直径值。