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PDMS surface modification in the application of waveguide claddingsfor evanescent field sensing

机译:PDMS表面改性在波导包层的应用中的渐逝场感测

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We fabricated SU-8 based slab waveguides on surface-modified poly(dimethyl siloxane) PDMS lower claddings for application in evanescent field sensing. In this application, higher sensitivity is obtained by generating stronger penetrating power above the waveguide into the analyte. This can be achieved by reducing the refractive index of the substrate. Compared with glass substrates that have a refractive index of 1.5, PDMS has a refractive index of 1.42 at 633 nm, thus serving as a better lower cladding material for high-sensitivity sensing with an evanescent field or as claddings in multilayer waveguide applications. In order to increase the adhesion of PDMS surfaces for successful SU-8 application we treated PDMS thin films in low-frequency (40 kHz) oxygen plasma for varied length of exposure time. The treatment process made PDMS hydrophilic and created nano-structures on the surfaces. The resultant surface topography with different exposure time was studied by an interferometric profiler on PDMS lower claddings and the later spin-coated SU-8 waveguides. Measurement results showed that longer plasma treatment on PDMS claddings significantly improved the uniformity and waviness of the waveguides. Light propagation tests performed with a prism coupler and an end-butt coupling setup proved that PDMS can be used as a proper material for SU-8 waveguides.
机译:我们在表面改性的聚(二甲基硅氧烷)PDMS下覆层上制造了基于SU-8的平板波导,用于在渐逝场感测中应用。在本申请中,通过在波导上方的较强的穿透功率进入分析物来获得更高的灵敏度。这可以通过降低基材的折射率来实现。与具有1.5折射率为1.5的玻璃基板相比,PDMS在633nm处的折射率为1.42,因此用作具有渐逝场的高灵敏度感测的更好的下包层材料或多层波导应用中的熔覆。为了增加PDMS表面的成功SU-8应用的粘附,我们处理低频(40kHz)氧等离子体中的PDMS薄膜,用于各种曝光时间。处理过程使PDMS亲水和在表面上产生纳米结构。通过PDMS下衬垫和后续旋涂的SU-8波导的干涉式分析器研究了具有不同暴露时间的所得表面形貌。测量结果表明,在PDMS包层上较长的等离子体处理显着提高了波导的均匀性和波纹。用棱镜耦合器和端对接耦合设置执行的光传播测试证明了PDMS可以用作SU-8波导的适当材料。

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