English

High-efficiency broadband fiber-to-chip coupler using a 3D nanoprinting microfiber

Optics 2023-06-07 v2 Applied Physics

Abstract

We propose a method for coupling a tapered optical fiber to an inverted tapered SiN waveguide by fabricating a microfiber using 3D nanoprinting lithography. The microfiber consists of three parts: a tapered cladding cap, an S-bend, and a straight part, all composed of high-refractive-index material. Light is adiabatically coupled from the tapered fiber to the printed microfiber through the cladding cap. The light is then transmitted through the S-bend and the straight part with low loss and is finally coupled to the waveguide through the evanescent field. In the simulation, our design can achieve a high coupling efficiency (TE mode) of ~97% at a wavelength of 1542 nm with a wide bandwidth of ~768 nm at the 1-dB cut-off criterion.

Keywords

Cite

@article{arxiv.2303.09722,
  title  = {High-efficiency broadband fiber-to-chip coupler using a 3D nanoprinting microfiber},
  author = {Dong-Hui Fan and Xing-Yu Zhang and Wei-Jun Zhang and Ruo-Yan Ma and Jia-Min Xiong and Yu-Ze Wang and Zhi-Gang Chen and Zhen Wang and Li-Xing You},
  journal= {arXiv preprint arXiv:2303.09722},
  year   = {2023}
}

Comments

14 pages, 8 figures

R2 v1 2026-06-28T09:20:55.176Z