Pirri Angela, Maksimov Roman N, Li Jiang, Vannini Matteo, Toci Guido
Istituto di Fisica Applicata "N. Carrara", Consiglio Nazionale delle Ricerche, 50019 Sesto Fiorentino, FI, Italy.
Institute of Electrophysics UrB RAS, 620016 Ekaterinburg, Russia.
Materials (Basel). 2022 Mar 11;15(6):2084. doi: 10.3390/ma15062084.
This paper is devoted to reviewing the latest results achieved in solid-state lasers based on thulium-doped mixed-sesquioxide ceramics, i.e., (Lu,Sc,Y)O. The near- and mid-infrared regions are of interest for many applications, from medicine to remote sensing, as they match molecular fingerprints and cover several atmospheric transparency windows. These matrices are characterized by a strong electron-phonon interaction-which results in a large splitting of the ground state-and by a spectral broadening of the optical transition suitable for developing tunable and short-pulse lasers. In particular, the manuscript reports on the trivalent thulium laser transitions at 1.5, 1.9, and 2.3 µm, along with the thermal and optical characteristics of the (Lu,Sc,Y)O ceramics, including the fabrication techniques, spectroscopic and optical properties, and laser performances achieved in different pumping regimes, such as continuous-wave (CW), quasi-CW, and pulsed modes. A comparison of the performance obtained with these mixed-sesquioxide ceramics and with the corresponding crystals is reported.
本文致力于综述基于掺铥混合倍半氧化物陶瓷,即(Lu,Sc,Y)O的固态激光器所取得的最新成果。近红外和中红外区域因与分子指纹相匹配并覆盖多个大气透明窗口,在从医学到遥感等诸多应用中备受关注。这些基质的特点是具有强烈的电子 - 声子相互作用(这导致基态的大分裂)以及适合开发可调谐和短脉冲激光器的光学跃迁谱展宽。特别是,该手稿报道了1.5、1.9和2.3μm处的三价铥激光跃迁,以及(Lu,Sc,Y)O陶瓷的热学和光学特性,包括制造技术、光谱和光学性质,以及在不同泵浦方式(如连续波(CW)、准连续波和脉冲模式)下实现的激光性能。还报道了这些混合倍半氧化物陶瓷与相应晶体所获得性能的比较。