English

Monolithically integrated active passive waveguide array fabricated on thin film lithium niobate using a single continuous photolithography process

Optics 2022-09-13 v1 Applied Physics

Abstract

We demonstrate a robust low-loss optical interface by tiling passive (i.e., without doping of active ions) thin film lithium niobate (TFLN) and active (i.e., doped with rare earth ions) TFLN substrates for monolithic integration of passive/active lithium niobate photonics. The tiled substrates composed of both active and passive areas allow to pattern the mask of the integrated active passive photonic device at once using a single continuous photolithography process. The interface loss of tiled substrate is measured as low as 0.26 dB. Thanks to the stability provided by this approach, a four-channel waveguide amplifier is realized in a straightforward manner, which shows a net gain of ~5 dB at 1550-nm wavelength and that of ~8 dB at 1530-nm wavelength for each channel. The robust low-loss optical interface for passive/active photonic integration will facilitate large-scale high performance photonic devices which require on-chip light sources and amplifiers.

Keywords

Cite

@article{arxiv.2209.04898,
  title  = {Monolithically integrated active passive waveguide array fabricated on thin film lithium niobate using a single continuous photolithography process},
  author = {Yuan Zhou and Yiran Zhu and Zhiwei Fang and Shupeng Yu and Ting Huang and Junxia Zhou and Rongbo Wu and Jian Liu and Yu Ma and Zhe Wang and Jianping Yu and Zhaoxiang Liu and Haisu Zhang and Zhenhua Wang and Min Wang and Ya Cheng},
  journal= {arXiv preprint arXiv:2209.04898},
  year   = {2022}
}

Comments

13 pages, 5 figures

R2 v1 2026-06-28T01:05:21.412Z