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基于双包层光纤耦合器的表面等离子体共振传感器检测及光纤布拉格光栅倾斜激发包层模。

Surface plasmon resonance sensor interrogation with a double-clad fiber coupler and cladding modes excited by a tilted fiber Bragg grating.

出版信息

Opt Lett. 2013 Nov 15;38(22):4911-4. doi: 10.1364/OL.38.004911.

Abstract

We present a novel optical fiber surface plasmon resonance (SPR) sensor scheme using reflected guided cladding modes captured by a double-clad fiber coupler and excited in a gold-coated fiber with a tilted Bragg grating. This new interrogation approach, based on the reflection spectrum, provides an improvement in the operating range of the device over previous techniques. The device allows detection of SPR in the reflected guided cladding modes and also in the transmitted spectrum, allowing comparison with standard techniques. The sensor has a large operating range from 1.335 to 1.432 RIU, and a sensitivity of 510.5 nm/RIU. The device shows strong dependence on the polarization state of the guided core mode which can be used to turn the SPR on or off.

摘要

我们提出了一种新颖的光纤表面等离子体共振(SPR)传感器方案,该方案利用双包层光纤耦合器捕获的反射导模,并在涂有金的光纤中用倾斜布拉格光栅激发。这种新的询问方法基于反射光谱,与以前的技术相比,提高了设备的工作范围。该器件允许在反射导模和传输光谱中检测 SPR,从而可以与标准技术进行比较。该传感器的工作范围从 1.335 到 1.432 RIU 非常大,灵敏度为 510.5nm/RIU。该器件对导芯模式的偏振状态有很强的依赖性,可用于打开或关闭 SPR。

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