Dwivedi Yogendra S, Sharma Anuj K, Gupta Banshi D
Department of Physics, Indian Institute of Technology Delhi, New Delhi, India.
Appl Opt. 2007 Jul 20;46(21):4563-9. doi: 10.1364/ao.46.004563.
We have theoretically analyzed the influence of skew rays on the performance of a fiber-optic sensor based on surface plasmon resonance. The performance of the sensor has been evaluated in terms of its sensitivity and signal-to-noise ratio (SNR). The theoretical model for skewness dependence includes the material dispersion in fiber cores and metal layers, simultaneous excitation of skew rays, and meridional rays in the fiber core along with all guided rays launching from a collimated light source. The effect of skew rays on the SNR and the sensitivity of the sensor with two different metals has been compared. The same comparison is carried out for the different values of design parameters such as numerical aperture, fiber core diameter, and the length of the surface-plasmon-resonance (SPR) active sensing region. This detailed analysis for the effect of skewness on the SNR and the sensitivity of the sensor leads us to achieve the best possible performance from a fiber-optic SPR sensor against the skewness in the optical fiber.
我们从理论上分析了斜光线对基于表面等离子体共振的光纤传感器性能的影响。已根据传感器的灵敏度和信噪比(SNR)对其性能进行了评估。偏斜度相关性的理论模型包括光纤芯和金属层中的材料色散、光纤芯中斜光线和子午光线的同时激发,以及从准直光源发射的所有导光线。比较了斜光线对两种不同金属制成的传感器的信噪比和灵敏度的影响。针对数值孔径、光纤芯直径和表面等离子体共振(SPR)有源传感区域长度等不同设计参数值进行了同样的比较。对偏斜度对传感器信噪比和灵敏度的影响进行的详细分析,使我们能够在光纤存在偏斜的情况下,从光纤SPR传感器获得尽可能最佳的性能。