论文标题
3D打印的刻面连接光学元素,用于将VCSEL和光电二极管连接到纤维阵列和多核纤维
3D-printed facet-attached optical elements for connecting VCSEL and photodiodes to fiber arrays and multi-core fibers
论文作者
论文摘要
基于纤维阵列的多层光纤和丝带可以通过空间分离的通道大规模平行地传输信号,从而以线性增加的技术努力提供有吸引力的带宽缩放。但是,纤维阵列或多芯纤维之间的光耦合以及垂直腔表面发射激光器(VCSEL)或光电二极管(PD)的标准线性阵列之间的光耦合仍然是一个挑战。在本文中,我们证明了3D打印的小相协调微镜(FAML)为连接多模纤维阵列以及多模多极纤维的单个核心提供了一个有吸引力的途径,即VCSEL或PD的标准阵列。自由形耦合元件在原位印刷,设备上具有高精度,并通过高分辨率的多光子光刻。我们证明,耦合损失降至0.35 dB,横向1 dB对准公差超过10 $ $ m m,从而可以利用依赖行业标准的机器视觉的快速被动装配技术。据我们所知,我们的实验代表了耦合界面的首次演示,该耦合接口将多核纤维的单个核心连接到在标准线性阵列中布置的VCSEL或PD,而无需基于基于纤维或基于波导的风扇输出结构。使用这种方法,我们构建了一个3 x 25 GBIT/S收发器组件,该组件适合于一个小型的可插入器模块,并满足IEEE 802.3标准中指定的许多性能指标。
Multicore optical fibers and ribbons based on fiber arrays allow for massively parallel transmission of signals via spatially separated channels, thereby offering attractive bandwidth scaling with linearly increasing technical effort. However, low-loss coupling of light between fiber arrays or multicore fibers and standard linear arrays of vertical-cavity surface-emitting lasers (VCSEL) or photodiodes (PD) still represents a challenge. In this paper, we demonstrate that 3D-printed facet-attached microlenses (FaML) offer an attractive path for connecting multimode fiber arrays as well as individual cores of multimode multicore fibers to standard arrays of VCSEL or PD. The freeform coupling elements are printed in situ with high precision on the device and fiber facets by high-resolution multi-photon lithography. We demonstrate coupling losses down to 0.35 dB along with lateral 1 dB alignment tolerances in excess of 10 $μ$m, allowing to leverage fast passive assembly techniques that rely on industry-standard machine vision. To the best of our knowledge, our experiments represent the first demonstration of a coupling interface that connects individual cores of a multicore fiber to VCSEL or PD arranged in a standard linear array without the need for additional fiber-based or waveguide-based fan-out structures. Using this approach, we build a 3 x 25 Gbit/s transceiver assembly which fits into a small form-factor pluggable module and which fulfills many performance metrics specified in the IEEE 802.3 standard.