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Radiated and guided optical waves of a magnetic dipole-nanofiber system

机译:磁偶极-纳米纤维系统的辐射和引导光波

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摘要

Nanophotonics–photonic structures with subwavelength features–allow accessing high intensity and localized electromagnetic field and hence is an ideal platform for investigating and exploiting strong lightmatter interaction. In particular, such a strong light-matter interaction requires investigating the interaction of a magnetic dipole with the electromagnetic field– a less-explored topic, which has usually been ignored within the framework of electric dipole approximation. Motivated by recent advances in the emerging field of multipolar nanophotonics, here we develop an analytical model that provides a new insight into analyzing a magnetic dipole and a nanofiber. This method enables us to examine the effect of second term in the multipolar expansion of light-matter interaction, magnetic dipole approximation, with individual guided and radiation modes of the nanofiber. This is a critical key in developing nanophotonic integrated devices based on magnetic nature of light for super-imaging, biosensing, and optical computing.
机译:纳米光子-具有亚波长特征的光子结构-允许访问高强度和局部电磁场,因此是研究和利用强光物质相互作用的理想平台。特别是,如此强的光-质相互作用需要研究磁偶极子与电磁场之间的相互作用,这是一个研究较少的话题,通常在电偶极子近似框架内被忽略。基于多极纳米光子学新兴领域的最新进展,在这里,我们开发了一种分析模型,为分析磁偶极子和纳米纤维提供了新的见识。该方法使我们能够检查第二项在光导相互作用的多极扩展,磁偶极子近似,纳米纤维的单独引导和辐射模式下的影响。这是开发基于光的磁性的纳米光子集成设备的关键,用于超成像,生物传感和光学计算。

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