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The Fabrication Of Polymer-based Evanescent Optical Waveguide For Biosensing

机译:用于生物传感的聚合物基E逝光波导的制备

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A polymer waveguide was fabricated to amplify the evanescent optical field for biosensing. The structure of waveguide was designed to propagate a normal single mode at the input and output regions for low loss beam coupling and propagation. A sensing region was formed in the middle of the waveguide to activate the evanescent mode and to induce high birefringence by depositing a thin dielectric film with a high refractive index on a single mode waveguide. A polymer waveguide with the dimensions of 7 μm-width and 2.5 μm-thickness was fabricated by photolithography and dry-etching. The active region of the TiO_2 thin film was fabricated with the dimensions of 20 mm-length, 20 nm-thickness and 2 mm-tapered tail. A polarimetric interference technique was used to evaluate the evanescent waveguide biosensor, and biomaterial such as glycerol was tested. The sensitivity of the sensor increased with increasing TiO_2 film thickness. For the fabricated waveguide with a 20 nm-thick TiO_2 film, the measured index change to the lead phase variation of 2π was 1.8 × 10~(-4).
机译:制备了聚合物波导以放大用于生物传感的e逝光场。波导的结构设计为在输入和输出区域传播正常的单模,以实现低损耗的光束耦合和传播。通过在单模波导上沉积具有高折射率的薄介电膜,在波导的中间形成一个感应区域,以激活渐逝模式并引起高双折射。通过光刻和干蚀刻来制造尺寸为7μm的宽度和2.5μm的厚度的聚合物波导。 TiO 2薄膜的有源区被制造为具有20mm长,20nm厚和2mm锥形尾部的尺寸。使用极化干涉技术来评估waveguide逝波导管生物传感器,并测试了诸如甘油之类的生物材料。传感器的灵敏度随着TiO_2膜厚度的增加而增加。对于制作的具有20 nm厚TiO_2薄膜的波导,测得的相对于2π的引线相位变化的折射率变化为1.8×10〜(-4)。

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