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3D printed fiber sockets for plug and play micro-optics

机译:用于即插即用微光学的3D印刷光纤插座

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Integrating micro-optical components at the end facet of an optical fiber enables compact optics to shape the output beam(e.g.collimating,focusing,and coupling to free space elements or photonic integrated circuits).However,the scalability of this approach is a longstanding challenge as these components must be aligned onto individual fiber facets.In this paper,we propose a socket that enables easy slotting of fibers,self-alignment,and coupling onto micro-optical components.This integrated socket can be detached from the substrate upon fiber insertion to create a stand-alone optical system.Fabrication is done using nanoscale 3D printing via two-photon polymerization lithography onto glass substrates,which allows multiple sockets to be patterned in a single print.We investigated variations in socket design and evaluated the performance of optical elements for telecom wavelengths.We obtained an alignment accuracy of∼3.5μm.These socket designs can be customized for high efficiency chip to fiber coupling and extended to other spectral ranges for free-form optics.
机译:在光纤的端面上积分微光学组件使得紧凑的光学能够以输出光束(例如,例如,以自由空间元件或光子集成电路耦合)。然而,这种方法的可扩展性是一种长期挑战由于这些组件必须与各个纤维面对齐。本文提出了一种插座,可以轻松放置纤维,自对准和耦合到微光学组件上。本质可以在光纤插入时从基板上拆卸。为了创建独立的光学系统。通过双光子聚合光刻在玻璃基板上使用纳米级3D打印进行结复,这允许多个插座在单个打印中图案化。我们的插座设计中的调查变化并评估了光学的性能。电信波长的元素。我们获得了〜3.5μm的对准精度。这些套接字设计可以为高效率芯片定制光纤耦合并扩展到其他光谱范围,用于自由形状光学器件。

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