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Manufacture of Three-Dimensional Optofluidic Spot-Size Converters in Fused Silica Using Hybrid Laser Microfabrication

  • Jianping Yu
  • , Jian Xu*
  • , Aodong Zhang
  • , Yunpeng Song
  • , Jia Qi
  • , Qiaonan Dong
  • , Jianfang Chen*
  • , Zhaoxiang Liu
  • , Wei Chen
  • , Ya Cheng*
  • *此作品的通讯作者
  • Tongji University
  • CAS - Shanghai Institute of Optics and Fine Mechanics
  • East China Normal University
  • University of Chinese Academy of Sciences

科研成果: 期刊稿件文章同行评审

摘要

We propose a hybrid laser microfabrication approach for the manufacture of three-dimensional (3D) optofluidic spot-size converters in fused silica glass by a combination of femtosecond (fs) laser microfabrication and carbon dioxide laser irradiation. Spatially shaped fs laser-assisted chemical etching was first performed to form 3D hollow microchannels in glass, which were composed of embedded straight channels, tapered channels, and vertical channels connected to the glass surface. Then, carbon dioxide laser-induced thermal reflow was carried out for the internal polishing of the whole microchannels and sealing parts of the vertical channels. Finally, 3D optofluidic spot-size converters (SSC) were formed by filling a liquid-core waveguide solution into laser-polished microchannels. With a fabricated SSC structure, the mode spot size of the optofluidic waveguide was expanded from ~8 μm to ~23 μm with a conversion efficiency of ~84.1%. Further measurement of the waveguide-to-waveguide coupling devices in the glass showed that the total insertion loss of two symmetric SSC structures through two ~50 μm-diameter coupling ports was ~6.73 dB at 1310 nm, which was only about half that of non-SSC structures with diameters of ~9 μm at the same coupling distance. The proposed approach holds great potential for developing novel 3D fluid-based photonic devices for mode conversion, optical manipulation, and lab-on-a-chip sensing.

源语言英语
文章编号9449
期刊Sensors
22
23
DOI
出版状态已出版 - 12月 2022

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