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基于高折射率介质的光纤内高分辨率光子纳米射流。

On-fiber high-resolution photonic nanojets via high refractive index dielectrics.

出版信息

Opt Express. 2022 Nov 21;30(24):43678-43690. doi: 10.1364/OE.474894.

Abstract

In this manuscript, we present high spatial resolution focusing of electromagnetic waves at telecommunication wavelengths (λ = 1.55 µm) by using high-refractive index mesoscale dielectrics placed at the end of an optical fiber. Our approach exploits photonic nanojets (PNJs) to achieve high-intensity, spatially narrow focal spots. The response of the device is evaluated in detail considering 2-dimensional (2D) and 3-dimensional (3D) configurations using high-index mesoscale cylindrical and spherical dielectrics, respectively, placed on top of an optical fiber. It is shown how the PNJs can be shifted towards the output surface of the mesoscale high-index dielectric by simply truncating its 2D/3D cylindrical/spherical output profile. With this setup, a PNJ with a high transversal resolution is obtained using the 2D/3D engineered mesoscale dielectric particles achieving a Full-Width at Half-Maximum of FWHM = 0.28λ (2D truncated dielectric), and FWHMy = 0.17λ and FWHMx = 0.21λ (3D truncated dielectric). The proposed structure may have potential in applications where near-field high spatial resolution is required, such as in sensing and imaging systems.

摘要

在本文中,我们通过在光纤末端放置高折射率介电微结构来实现对电信波长(λ=1.55 µm)的电磁波的高空间分辨率聚焦。我们的方法利用光子纳米射流(PNJ)来实现高强度、空间上狭窄的焦点。通过分别使用置于光纤顶部的高折射率介电微圆柱和微球,考虑二维(2D)和三维(3D)配置,详细评估了器件的响应。结果表明,通过简单地截断其 2D/3D 圆柱/球形输出轮廓,可以将 PNJ 推向微高折射率介电体的输出表面。通过这种设置,使用二维/三维工程介电微颗粒获得了具有高横向分辨率的 PNJ,其半最大值全宽(FWHM)为 0.28λ(二维截断介电体),FWHMy=0.17λ 和 FWHMx=0.21λ(三维截断介电体)。所提出的结构可能在需要近场高空间分辨率的应用中具有潜力,例如在传感和成像系统中。

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