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Evanescent Properties of Optical Diffraction from 2-Dimensional Hexagonal Photonic Crystals and Their Sensor Applications

机译:二维六边形光子晶体的衍射光的逝特性及其传感器应用

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摘要

The sensitivity of traditional diffraction grating sensors is limited by the spatial resolution of the measurement setup. Thus, a large space is required to improve sensor performance. Here, we demonstrate a compact hexagonal photonic crystal (PhC) optical sensor with high sensitivity. PhCs are able to diffract optical beams to various angles in azimuthal space. The critical wavelength that satisfies the phase matching or becomes evanescent was used to benchmark the refractive index of a target analyte applied on a PhC sensor. Using a glucose solution as an example, our sensor demonstrated very high sensitivity and a low limit of detection. This shows that the diffraction mechanism of hexagonal photonic crystals can be used for sensors when compact size is a concern.
机译:传统衍射光栅传感器的灵敏度受到测量设置的空间分辨率的限制。因此,需要大的空间来改善传感器性能。在这里,我们演示了具有高灵敏度的紧凑型六边形光子晶体(PhC)光学传感器。 PhC能够在方位空间中将光束衍射到各种角度。满足相位匹配或渐逝的临界波长用于对应用于PhC传感器的目标分析物的折射率进行基准测试。以葡萄糖溶液为例,我们的传感器显示出非常高的灵敏度和低检测限。这表明六边形光子晶体的衍射机制可用于紧凑型尺寸的传感器。

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