High-power and efficient operation of Ho:Lu2O3 ceramic laser at 2.1 <b> <i>μ</i> </b> m spectral gain region
Abstract
We report on the power scaling and high-efficiency operation of a Ho:Lu2O3 ceramic laser at 2.1 μm in-band pumped by a high-power, narrow-linewidth Tm-doped fiber laser at 1942 nm. The 0.5 at. % Ho3+-doped Ho:Lu2O3 ceramic was fabricated in-house through a vacuum sintering plus hot isostatic pressing (HIPing) process, showing a relatively low scattering loss of &lt;2.1% cm−1. A record output power of 10.2 W at 2121 nm was achieved with 45 W of absorbed pump power, corresponding to a slope efficiency of 27.5%. The beam quality factors (M2) at the maximum output were measured to be 1.34 and 1.28 in the x- and y-directions, respectively. The laser power and efficiency were enhanced by two orders of magnitude and nearly 30-fold compared to the previous results, which confirms the significant power scaling potential of in-band pumped Ho:Lu2O3 ceramic lasers for hundred-watt-level operation upon improved quality of the ceramic with a more homogeneous and denser microstructure.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (7)
Chuanyong Ren
Yaocong Han
Jiangsu Key Laboratory of Advanced Laser Materials and Devices, School of Physics and Electronic Engineering, Jiangsu Normal University 1 , 221116 Xuzhou,
Haotian Wang
Jun Wang
Fei Wang
Dingyuan Tang
Deyuan Shen