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Young’s fringes from vertically integrated slab waveguides : applications to humidity sensing.

机译:垂直集成的平板波导的杨氏条纹:在湿度传感中的应用。

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摘要

Using a multiple layer optical waveguide system consisting of two vertically slab waveguides, classical Young’s fringes may be obtained in the far-field diffraction plane. In agreement with the simple theory of diffraction interference the spacing of the far-field fringes is easily observed on mm to cm dimensions without further transformation of the output light. The simple methods of fabrication and means of optical coupling should provide a readily adaptable method for examining the principles of interferometry in an integrated optical format. The structure acts to transform polarized incident plane wave input light into separate slab modes of the device which emerge as two closely spaced and coherent sources at the output. The elements required for a classical Young’s fringe demonstration are therefore all embodied in this approach. The basic concept can be applied to an optical method for sensing. In one example of this we demonstrate measurement of the phase difference induced between the upper and lower propagating modes in structures due to water vapor diffusion into the layers which are formed from hydrophilic polymers. The Young’s fringe patterns exhibit a spatial intensity distribution which is sensitive to water vapor introduced over the surface of the structure. Differences in the effective index between the modes of the two waveguides during the diffusion of the vapor causes phase shifts which result in redistribution in the fringe pattern. The anticipated limit of detection of these devices is lower than 1 ppm for water vapor.
机译:使用由两个垂直平板波导组成的多层光波导系统,可以在远场衍射平面上获得经典的杨氏条纹。与简单的衍射干涉理论相一致,很容易在毫米到厘米的尺寸上观察到远场条纹的间距,而无需进一步变换输出光。简单的制造方法和光耦合方式应提供一种易于适应的方法,以集成光学格式检查干涉测量原理。该结构用于将偏振入射平面波输入光转换为设备的独立平板模式,该平板模式在输出端以两个紧密间隔且相干的光源出现。因此,经典扬式边缘演示所需的元素都体现在这种方法中。基本概念可以应用于用于感测的光学方法。在此的一个示例中,我们演示了由于水蒸气扩散到由亲水性聚合物形成的层中而导致的结构的上下传播模式之间引起的相差的测量。杨氏条纹图案表现出空间强度分布,该结构强度对在结构表面上引入的水蒸气敏感。在蒸气扩散期间,两个波导的模式之间的有效折射率不同会引起相移,从而导致条纹图案重新分布。对于水蒸气,这些设备的预期检测极限低于1 ppm。

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  • 年度 1999
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