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Lossy mode resonance sensors based on lateral light incidence in nanocoated planar waveguides

机译:基于侧向光入射的纳米涂层平面波导中的有损模式共振传感器

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摘要

The deposition of an indium oxide (In2O3) thin film on conventional planar waveguides (a coverslip and a glass slide) allows generating lossy mode resonances (LMR) by lateral incidence of light on the waveguide and by registering the optical spectrum in a spectrometer. This novel sensing system becomes an alternative to optical fibre, the substrate where LMR-based sensors have been developed so far, since it is easier to handle and more robust. An additional advantage is that cost effective waveguides, such as slides or coverslips, can be used in a platform that resembles surface plasmon resonance-based sensors in the Kretschmann configuration but without the need for a coupling prism and with the advantage of being able to generate TE and TM LMR resonances with metallic oxide or polymer thin films. The results are corroborated with simulations, which provide in-depth understanding of the phenomena involved in the sensing system. As a proof-of-concept for the optical platform, two refractometers were developed, one with low sensitivity and for a wide range of refractive indices, and the other with higher sensitivity but for a narrower refractive index range. The sensors presented here open up the path for the development of LMR-based chemical sensors, environmental sensors, biosensors, or even the generation of other optical phenomena with the deposition of multilayer structures, gratings or nanostructures, which is much easier in a planar waveguide than in an optical fibre.
机译:在常规的平面波导(盖玻片和载玻片)上沉积氧化铟(In2O3)薄膜可以通过光在波导上的侧向入射以及在光谱仪中记录光谱来产生有损模共振(LMR)。这种新颖的传感系统已成为光纤的替代产品,而光纤是迄今已开发出基于LMR的传感器的基板,因为它更易于操作且更坚固。另一个优点是,可以在类似于Kretschmann配置中基于表面等离振子共振的传感器的平台中使用经济高效的波导(例如载玻片或盖玻片),而无需耦合棱镜,并且具有能够产生能量的优势。 TE和TM LMR与金属氧化物或聚合物薄膜的共振。仿真结果证实了结果,仿真结果提供了对传感系统中所涉及现象的深入了解。作为光学平台的概念验证,开发了两种折光仪,一种折光仪灵敏度低,适用于较宽的折射率范围,另一种折光仪灵敏度较高,但适用于较窄的折射率范围。此处介绍的传感器为基于LMR的化学传感器,环境传感器,生物传感器的开发开辟了道路,甚至通过沉积多层结构,光栅或纳米结构而产生其他光学现象,这在平面波导中更容易比光纤

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