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Design of Mach-Zehnder interferometer and ring resonator for biochemical sensing

机译:用于生化传感的马赫曾德尔干涉仪和环形谐振器的设计

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摘要

We proposed a compact design of an optical biochemical sensor based on the Mach-Zehnder interferometer (MZI), which was coupled by a ring resonator (RR) as a sensing tool. The sensor sensitivity has been determined by power difference at the output ports. The sensor enhancement has been optimized by numerically evaluating the geometrical parameters of the MZI and RR. A great sensor sensitivity depicted by Fano resonance characteristic has been demonstrated as a function of the round trip phase in the range of 4×10-4 - 4×10-4, which was changed by the presence of the sample solution in the sensing area. This optimum sensitivity has been obtained for the values of two coupling coefficients of the MZI ?1 = ?2 = 0.5/mm and the coupling coefficient between the MZI arm and RR ?R = 0.5/mm. Furthermore, a good profile of sensitivity exchange has been exhibited by inducing the direct current voltage to the coupling region of ?R. Finally, the output power transmission of the ring-coupled arm was depicted as a function of tunable.
机译:我们提出了一种基于Mach-Zehnder干涉仪(MZI)的光学生化传感器的紧凑设计,该干涉仪通过环形谐振器(RR)作为传感工具进行耦合。传感器灵敏度由输出端口的功率差确定。通过数字评估MZI和RR的几何参数,优化了传感器的功能。由Fano共振特性描述的高传感器灵敏度已被证明是往返相位在4×10-4-4×10-4范围内的函数,而该灵敏度会因传感区域中样品溶液的存在而改变。对于两个MZIα1=α2= 0.5 / mm的耦合系数和MZI臂与RRαR= 0.5 / mm的耦合系数的值,已经获得了最佳灵敏度。此外,通过将直流电压感应到ΔR的耦合区域,已经表现出良好的灵敏度交换特性。最后,将环形耦合臂的输出功率传输描述为可调函数。

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