Potyrailo R A, Ruddy V P, Hieftje G M
Appl Opt. 1996 Jul 20;35(21):4102-11. doi: 10.1364/AO.35.004102.
Spectral distortions that arise in evanescent-wave absorption spectra obtained with multimode step-index optical fibers are analyzed both theoretically and experimentally. Theoretical analysis is performed by the application of Kramers-Kronig relations to the real and the imaginary parts of the complex refractive index of an absorbing external medium. It is demonstrated that even when the extinction coefficient of the external medium is small, anomalous dispersion of that medium in the vicinity of an absorption band must be considered. Deviations from Beer's law, band distortions, and shifts in peak position are quantified theoretically as a function of the refractive index and the extinction coefficient of the external medium; the effect of bandwidth for both Lorentzian and Gaussian bands is also evaluated. Numerical simulations are performed for two types of sensing sections in commonly used plastic-clad silica optical fibers. These sensors include an unclad fiber in contact with a lower-index absorbing liquid and a fiber with the original cladding modified with an absorbing species. The numerical results compare favorably with those found experimentally with these types of sensing sections.
对使用多模阶跃折射率光纤获得的倏逝波吸收光谱中出现的光谱畸变进行了理论和实验分析。理论分析是通过将克拉默斯-克勒尼希关系应用于吸收性外部介质复折射率的实部和虚部来进行的。结果表明,即使外部介质的消光系数很小,也必须考虑该介质在吸收带附近的反常色散。理论上根据外部介质的折射率和消光系数对偏离比尔定律、谱带畸变和峰值位置的偏移进行了量化;还评估了洛伦兹带和高斯带带宽的影响。对常用塑料包层石英光纤中的两种传感段进行了数值模拟。这些传感器包括与低折射率吸收液接触的裸光纤以及用吸收性物质改性了原始包层的光纤。数值结果与使用这些类型传感段的实验结果吻合良好。