English

A photonic integrated circuit based erbium-doped amplifier

Optics 2022-07-18 v2 Applied Physics

Abstract

Erbium-doped fiber amplifiers have revolutionized long-haul optical communications and laser technology. Erbium ions could equally provide a basis for efficient optical amplification in photonic integrated circuits. However, this approach has thus far remained impractical due to insufficient output power. Here, we demonstrate a photonic integrated circuit based erbium amplifier reaching 145 mW output power and more than 30 dB small-signal gain -- on par with commercial fiber amplifiers and beyond state-of-the-art III-V heterogeneously integrated semiconductor amplifiers. We achieve this by applying ion implantation to recently emerged ultralow-loss Si3N4 photonic integrated circuits with meter-scale-length waveguides. We utilize the device to increase by 100-fold the output power of soliton microcombs, required for low-noise photonic microwave generation or as a source for wavelength-division multiplexed optical communications. Endowing Si3N4 photonic integrated circuits with gain enables the miniaturization of a wide range of fiber-based devices such as high-pulse-energy femtosecond mode-locked lasers.

Keywords

Cite

@article{arxiv.2204.02202,
  title  = {A photonic integrated circuit based erbium-doped amplifier},
  author = {Yang Liu and Zheru Qiu and Xinru Ji and Jijun He and Johann Riemensberger and Martin Hafermann and Rui Ning Wang and Junqiu Liu and Carsten Ronning and Tobias J. Kippenberg},
  journal= {arXiv preprint arXiv:2204.02202},
  year   = {2022}
}

Comments

25 pages, 16 figures

R2 v1 2026-06-24T10:38:28.749Z