首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Low loss surface electromagnetic waves on a metal-dielectric waveguide working at short wavelength and aqueous environment
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Low loss surface electromagnetic waves on a metal-dielectric waveguide working at short wavelength and aqueous environment

机译:在短波长和含水环境下工作的金属介电波导上的低损耗表面电磁波

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摘要

A metal-dielectric waveguide (MDW) structure was presented to generate surface electromagnetic waves (SEWs) suitable for short wavelength (500 nm) working in aqueous environment Aluminum thin film was employed to adapt for the short wavelength and silica layer was introduced to form the low loss surface mode, whose energy is mainly confined at silica/water interface. Transfer matrix theory was used to investigate theoretically the above ideas, and the process to design and optimize the structural parameters of the MDW structure for the SEWs was also introduced. Experiments were performed to validate the existence and the low loss nature of the SEWs, and the wavelength of the excited SEW was measurement by a home-built near field scanning system which accords well with the theoretical prediction. This type of SEWs on a MDW structure can be as an alternative to overcome the limitations associated with the traditional metal-type waveguide mode such as surface plasmon polariton, and could be potential for applications like the imaging, bio-sensing, precision measurement, etc.
机译:提出了一种金属介质波导(MDW)结构以产生适用于在水性环境中工作的短波长(500nm)的表面电磁波(缝制),采用铝薄膜适应短波长,引入二氧化硅层形成低损耗表面模式,其能量主要局限于二氧化硅/水界面。还介绍了转移矩阵理论用于了解上述思想,以及设计和优化缝制MDW结构的结构参数的过程。进行实验以验证缝制的存在性和低损耗性,并且兴奋缝的波长是由家庭建造的近场扫描系统测量,与理论预测很好。 MDW结构上的这种类型的缝合可以是替代克服与传统金属型波导模式相关的限制,例如表面等离子体偏振片,并且可能是成像,生物传感,精密测量等应用的潜力。

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