首页> 外文会议>Conference on Tuning the Optic Response of Photonic Bandgap Structures >The Institute of Optics, University of Rochester, Rochester, NY 14627-0186
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The Institute of Optics, University of Rochester, Rochester, NY 14627-0186

机译:罗切斯特大学光学研究所,罗切斯特,NY 14627-0186

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摘要

There is a growing need for miniature low-cost chemical sensors for use in monitoring environmcnlal conditions. Applications range from environmental pollution monitoring, industrial process control and homeland security threat detection to biomedical diagnostics. Integrated opto-chemical sensors can provide the required functionality by monitoring chemistry induced changes in the refractive, absorptive, or luminescent properties of materials. Mach-Zehnder (MZ) interferometers, using the phase induced from a chemically reactive film, have shown success for such applications but typically are limited to one chemical analysis per sensor. In this paper we present a MZ-like sensor using the dispersion properties of a photonic crystal lattice. Properly engineered dispersion guiding enables the creation of multiple parallel MZ-like sensors monitoring different chemical reactions in a device much smaller than a typical MZ sensor. The phase shift induced in one arm of the photonic crystal structure by the chemical reaction of a special film induces a change in the sensor output. The use of a dispersion guiding photonic crystal structure enables the use ol" lower refractive index materials because the creation of a bandgap is not necessary. This in turn increases coupling efficiency into the device. Other advantages of this type of structure include the ability to guide both TE and TM modes as well as reduced sensitivity to fabrication tolerances. Two-dimensional FDTD analysis is used to optimize and model the effectiveness of the structure.
机译:微型低成本化学传感器越来越需要用于监测环境条件。应用范围从环境污染监测,工业过程控制和国土安全威胁检测到生物医学诊断。集成光学传感器可以通过监测材料的折射率或发光性能的化学诱导变化来提供所需的功能。 Mach-Zehnder(MZ)干涉仪使用由化学反应膜诱导的相位,对这些应用示出了成功,但通常限于每个传感器的一种化学分析。在本文中,我们使用光子晶格的色散性质呈现MZ样传感器。适当的设计分散引导能够创建多个并行MZ样传感器,在远小于典型的MZ传感器的设备中监测不同的化学反应。通过特殊膜的化学反应在光子晶体结构的一个臂中引起的相移引起了传感器输出的变化。使用色散引导光子晶体结构使得使用OL“较低折射率材料,因为不需要带隙的产生。这又增加了耦合效率进入设备。这种类型的其他优点包括引导的能力TE和TM模式以及对制造公差的敏感性降低。二维FDTD分析用于优化和模拟结构的有效性。

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