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Surface plasmon-like sensor based on surface electromagnetic waves in a photonic band-gap material

机译:基于光子带隙材料中的表面电磁波的表面等离子体激元样传感器

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摘要

The design and operating principles of a new type of surface electromagnetic wave sensor are described and demonstrated. The method of operation of this device is similar to surface plasmon sensors except that the surface-active material-a metal film in the case of surface plasmon sensors—is replaced by a one-dimensional photonic band-gap array. The advantages of using a photonic band-gap material instead of a metal film include enhanced sensitivity, physical, and chemical robustness, and the ability to engineer the optical response of the surface active layer to create a device that operates at any optical wavelength. Experimental results are presented that illustrate sensing action by measuring the shift in the surface mode coupling angle with surface loading.
机译:描述并演示了新型表面电磁波传感器的设计和工作原理。该设备的操作方法与表面等离子体激元传感器相似,只是表面活性材料(在表面等离子体激元传感器的情况下为金属膜)被一维光子带隙阵列代替。使用光子带隙材料代替金属膜的优点包括增强的灵敏度,物理和化学鲁棒性,以及对表面活性层的光学响应进行设计以创建在任何光波长下工作的器件的能力。实验结果表明通过测量表面模式耦合角随表面载荷的变化来说明传感作用。

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