English

Continuous-wave Raman Lasing in Aluminum Nitride Microresonators

Optics 2016-09-21 v1

Abstract

We report the first investigation on continuous-wave Raman lasing in high-quality-factor aluminum nitride (AlN) microring resonators. Although wurtzite AlN is known to exhibit six Raman-active phonons, single-mode Raman lasing with low threshold and high slope efficiency is demonstrated. Selective excitation of A1TO_1^\mathrm{TO} and E2high_2^\mathrm{high} phonons with Raman shifts of \sim612 and 660 cm1^{-1} is observed by adjusting the polarization of the pump light. A theoretical analysis of Raman scattering efficiency within c{c}-plane (0001) of AlN is carried out to help account for the observed lasing behavior. Bidirectional lasing is experimentally confirmed as a result of symmetric Raman gain in micro-scale waveguides. Furthermore, second-order Raman lasing with unparalleled output power of \sim11.3 mW is obtained, which offers the capability to yield higher order Raman lasers for mid-infrared applications.

Keywords

Cite

@article{arxiv.1609.06123,
  title  = {Continuous-wave Raman Lasing in Aluminum Nitride Microresonators},
  author = {Xianwen Liu and Changzheng Sun and Bing Xiong and Lai Wang and Jian Wang and Yanjun Han and Zhibiao Hao and Hongtao Li and Yi Luo and Jianchang Yan and Tongbo Wei and Yun Zhang and Junxi Wang},
  journal= {arXiv preprint arXiv:1609.06123},
  year   = {2016}
}

Comments

11 pages, 12 figures, 20 equations

R2 v1 2026-06-22T15:55:16.711Z