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采用3D纳米打印制造的独立式微尺度光子灯笼空间模式(解)复用器。

Free-standing microscale photonic lantern spatial mode (De-)multiplexer fabricated using 3D nanoprinting.

作者信息

Dana Yoav, Garcia Yehudit, Kukin Aleksei, Dallachiesa Lauren, Guerrier Sterenn, Fontaine Nicolas K, Marom Dan M

机构信息

Institute of Applied Physics, Hebrew University of Jerusalem, Jerusalem, Israel.

Nokia Bell Labs, 600 Mountain Ave, New Providence, NJ, 07974, USA.

出版信息

Light Sci Appl. 2024 Jun 3;13(1):126. doi: 10.1038/s41377-024-01466-6.

Abstract

Photonic lantern (PL) spatial multiplexers show great promise for a range of applications, such as future high-capacity mode division multiplexing (MDM) optical communication networks and free-space optical communication. They enable efficient conversion between multiple single-mode (SM) sources and a multimode (MM) waveguide of the same dimension. PL multiplexers operate by facilitating adiabatic transitions between the SM arrayed space and the single MM space. However, current fabrication methods are forcing the size of these devices to multi-millimeters, making integration with micro-scale photonic systems quite challenging. The advent of 3D micro and nano printing techniques enables the fabrication of freestanding photonic structures with a high refractive index contrast (photopolymer-air). In this work we present the design, fabrication, and characterization of a 6-mode mixing, 375 µm long PL that enables the conversion between six single-mode inputs and a single six-mode waveguide. The PL was designed using a genetic algorithm based inverse design approach and fabricated directly on a 7-core fiber using a commercial two-photon polymerization-based 3D printer and a photopolymer. Although the waveguides exhibit high index contrast, low insertion loss (-2.6 dB), polarization dependent (-0.2 dB) and mode dependent loss (-4.4 dB) were measured.

摘要

光子灯笼(PL)空间复用器在一系列应用中展现出巨大潜力,例如未来的高容量模分复用(MDM)光通信网络和自由空间光通信。它们能够在多个单模(SM)光源与相同尺寸的多模(MM)波导之间实现高效转换。PL复用器通过促进SM阵列空间与单个MM空间之间的绝热转换来工作。然而,当前的制造方法使得这些器件的尺寸达到数毫米,这使得与微尺度光子系统集成颇具挑战性。3D微纳打印技术的出现使得能够制造具有高折射率对比度(光聚合物 - 空气)的独立光子结构。在这项工作中,我们展示了一种6模式混合、长度为375 µm的PL的设计、制造和表征,该PL能够在六个单模输入与单个六模波导之间实现转换。该PL采用基于遗传算法的逆向设计方法进行设计,并使用商用的基于双光子聚合的3D打印机和光聚合物直接在7芯光纤上制造。尽管波导具有高折射率对比度,但仍测量到了低插入损耗(-2.6 dB)、偏振相关损耗(-0.2 dB)和模式相关损耗(-4.4 dB)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b06/11144700/7f303e710d65/41377_2024_1466_Fig1_HTML.jpg

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