Jiang Bo, Hu Yuchan, Ren Linhao, Zhou Han, Shi Lei, Zhang Xinliang
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China.
Optics Valley Laboratory, Wuhan 430074, China.
Nanophotonics. 2022 Aug 15;11(18):4315-4322. doi: 10.1515/nanoph-2022-0360. eCollection 2022 Sep.
Benefited from abundant long-lived intermediate energy levels of rear earth elements, large anti-Stokes lasing can be realized by multi-photon upconversion processes, which does not demand rigorous phase match and ultrahigh pump power. Here, we have fabricated an Er-doped silica microsphere with an ultrahigh intrinsic quality factor of 1.2 × 10. By continuous-wave (CW) excitation at 1535 nm, four- and five-photon upconversion lasers are achieved simultaneously under room temperature, in which the lasing thresholds are estimated as 176 and 600 μW, respectively. Beside the ultralow thresholds, the microlaser also exhibits good stability of lasing intensity for practical applications. The four- and five-photon upconversion lasing from rare earth elements have not been separately demonstrated under CW pump and room temperature until this work. This demonstration provides a prospect to realizing high-performance short-wavelength laser by pumping low-energy photons.
得益于稀土元素丰富的长寿命中间能级,通过多光子上转换过程可实现大的反斯托克斯激光发射,该过程不需要严格的相位匹配和超高泵浦功率。在此,我们制备了一个本征品质因数高达1.2×10的掺铒二氧化硅微球。通过在1535nm处的连续波(CW)激发,在室温下同时实现了四光子和五光子上转换激光发射,其中激光阈值分别估计为176和600μW。除了超低阈值外,该微激光器在实际应用中还表现出良好的激光强度稳定性。直到这项工作之前,在连续波泵浦和室温下,稀土元素的四光子和五光子上转换激光发射尚未分别得到证明。这一证明为通过泵浦低能量光子实现高性能短波长激光提供了前景。