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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Multimode interferometric sensors on silicon optimized for fully integrated complementary-metal-oxide-semiconductor chemical-biological sensor systems
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Multimode interferometric sensors on silicon optimized for fully integrated complementary-metal-oxide-semiconductor chemical-biological sensor systems

机译:针对完全集成的互补金属氧化物半导体化学生物传感器系统进行了优化的硅上多模干涉式传感器

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摘要

We demonstrate an integrated evanescent-field multimode Mach-Zehnder interferometric chemical-biological sensor, fabricated on silicon, with sensitivity of parts per 10(9) achieved by modal pattern tracking and analysis. This sensor is fully compatible with the fabrication constraints of the silicon-complementary-metal-oxide-semiconductor (Si-CMOS) process. Furthermore, using the separately measured ellipsometric response together with the mass uptake of agent by the polymer sensing layer, we validate sensor performance via simulation and measure an absolute index sensitivity of 2.5 X 10(-6). We then extend this to a fully integrated chemical-biological sensor by considering the fundamental noise performance of CMOS detectors. We find that relatively short, < 5000 mu m long, interferometric sensing elements, with modal pattern analysis, allow fully integrated optical sensors on Si-CMOS (assuming a 2.8 mu m pixel pitch) with an index sensitivity of similar to 9.2 x 10(-7) and a corresponding concentration sensitivity of similar to 170 parts per 10(9) for methanol in N-2. (c) 2006 Optical Society of America.
机译:我们演示了集成的silicon逝场多模式Mach-Zehnder干涉化学生物传感器,在硅上制造,通过模态图案跟踪和分析,每10(9)的零件灵敏度。该传感器与硅互补金属氧化物半导体(Si-CMOS)工艺的制造约束条件完全兼容。此外,使用单独测量的椭圆偏振响应以及聚合物传感层对试剂的质量摄取,我们通过仿真验证了传感器性能,并测量了2.5 X 10(-6)的绝对指数灵敏度。然后,通过考虑CMOS检测器的基本噪声性能,将其扩展为完全集成的化学生物传感器。我们发现,相对短的,小于5000微米长的干涉式传感元件,具有模态图案分析功能,可以在Si-CMOS上完全集成光学传感器(假设像素间距为2.8微米),其折射率灵敏度约为9.2 x 10( -7)和相应的浓度灵敏度,对于N-2中的甲醇,其浓度灵敏度类似于每10(9)170份。 (c)2006年美国眼镜学会。

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