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Bragg grating based biochemical sensor using submicron Si/SiO_(2) waveguides for lab-on-a-chip applications: a novel design

机译:基于布拉格光栅的生化传感器,使用亚微米Si / SiO_(2)波导,用于芯片实验室应用:新颖的设计

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摘要

A novel biochemical sensor based on a submicrometer size, high core-cladding index difference, silica core Si-SiO_(2) waveguide with a Bragg grating written in its cladding region is proposed and analyzed. Waveguide parameters are optimized to obtain maximum sensitivity, and for lower refractive index samples, an optimum core width is found to exist for both the TE and the TM mode configurations. Owing to the high index contrast at the Si-SiO_(2) interface, the structure is much more sensitive while operating in the TM mode configuration, showing extremely high sensitivity [200-740 nm refractive index units (RIU)] for the ambient refractive indices between 1.33 and 1.63, which is of the order of most surface plasmon polariton (SPP) based biosensors. Further, unlike SPP based sensors, the proposed structure is free from any metallic layer or bulky prism and hence easy to realize. Owing to its simple structure and small dimensions, the proposed device could be easily integrated with planar lightwave circuits and could be used for lab-on-a-chip applications.
机译:提出并分析了一种亚微米尺寸,高芯-包层折射率差,石英芯Si-SiO_(2)波导在其包层区域写入布拉格光栅的新型生化传感器。对波导参数进行了优化以获得最大的灵敏度,并且对于较低折射率的样本,发现对于TE和TM模式配置都存在最佳纤芯宽度。由于Si-SiO_(2)界面处的高折射率对比度,该结构在TM模式配置下运行时更加灵敏,对环境折射显示出极高的灵敏度[200-740 nm折射率单位(RIU)]指数介于1.33和1.63之间,这是大多数基于表面等离振子极化(SPP)的生物传感器的数量级。此外,与基于SPP的传感器不同,所提出的结构没有任何金属层或笨重的棱镜,因此易于实现。由于其简单的结构和较小的尺寸,所提出的设备可以容易地与平面光波电路集成在一起,并且可以用于芯片实验室应用。

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