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Polymer integrated waveguide optical biosensor by using spectral splitting effect

机译:利用光谱分裂效应的聚合物集成波导光学生物传感器

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The polymer waveguide optical biosensor based on the Mach-Zehnder interferometer (MZI) by using spectral splitting effect is investigated. The MZI based biosensor has two unequal width sensing arms. With the different mode dispersion responses of the two-arm waveguides to the cladding refractive index change, the spectral splitting effect of the output interference spectrum is obtained, inducing a very high sensitivity. The influence of the different mode dispersions between the two-arm waveguides on the spectral splitting characteristic is analyzed. By choosing different lengths of the two unequal width sensing arms, the initial dip wavelength of the interference spectrum and the spectral splitting range can be controlled flexibly. The polymer waveguide optical biosensor is designed, and its sensing property is analyzed. The results show that the sensitivity of the polymer waveguide optical biosensor by using spectral splitting effect is as high as 104 nm/RIU, with an improvement of 2–3 orders of magnitude compared with the slot waveguide based microring biosensor.
机译:研究了基于Mach-Zehnder干涉仪(MZI)的高分子波导光学生物传感器的光谱分裂效应。基于MZI的生物传感器具有两个不相等的宽度感应臂。通过双臂波导对包层折射率变化的不同模式色散响应,可以获得输出干涉光谱的光谱分裂效果,从而产生很高的灵敏度。分析了双臂波导之间不同模式色散对光谱分裂特性的影响。通过选择两个不等长的宽度不同的感应臂的长度,可以灵活地控制干涉光谱的初始倾角和光谱分裂范围。设计了高分子波导光学生物传感器,并对其传感特性进行了分析。结果表明,与基于缝隙波导的微环生物传感器相比,利用光谱分裂效应的聚合物波导光学生物传感器的灵敏度高达104 nm / RIU,提高了2-3个数量级。

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