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Giant field enhancement in high-index dielectric subwavelength particles

机译:高折射率介电亚波长粒子的巨场增强

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摘要

Besides purely academic interest, giant field enhancement within subwavelength particles at light scattering of a plane electromagnetic wave is important for numerous applications ranging from telecommunications to medicine and biology. In this paper, we experimentally demonstrate the enhancement of the intensity of the magnetic field in a high-index dielectric cylinder at the proximity of the dipolar Mie resonances by more than two orders of magnitude for both the TE and TM polarizations of the incident wave. We present a complete theoretical explanation of the effect and show that the phenomenon is very general – it should be observed for any high-index particles. The results explain the huge enhancement of nonlinear effects observed recently in optics, suggesting a new landscape for all-dielectric nonlinear nanoscale photonics.
机译:除了纯粹的学术兴趣外,在平面电磁波的光散射下,亚波长粒子内的巨大场增强对于从电信到医学和生物学的众多应用也很重要。在本文中,我们通过实验证明了入射电波的TE和TM极化在偶极Mie共振附近的高折射率介质圆柱体中的磁场强度提高了两个数量级以上。我们提供了对该效应的完整理论解释,并表明该现象非常普遍-任何高折射率粒子都应观察到。结果解释了最近在光学中观察到的非线性效应的巨大增强,这为全介电非线性纳米级光子学提出了新的前景。

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