Multi-wavelength lasers, especially the triple-wavelength laser around 1060 nm, could be produced by the F → I transition of Nd and present numerous challenges and opportunities in the field of optoelectronics. The Nd-doped high-temperature phase of LaBSiO (β-LBSO) is an ideal crystal to produce triple-wavelength lasers; however, the crystal growth is challenging because of the phase transition from β-LBSO to low-temperature phase (α-LBSO) at 162 °C. This phase transition is successfully suppressed when the doping content of Nd is larger than 6.3 at. %, and the Nd-doped β-LBSO is stable at room temperature. The local disorder of BO tetrahedra due to Nd doping is essential to the stabilization of β-LBSO. For the first time, the β-LBSO:8%Nd crystal with a dimension of 1.8 × 1.8 × 1.8 cm is obtained through the top-seeded solution method. The crystal shows strong optical absorption in the range of 785-815 nm, matching well with the commercial laser diode pumping source. The optical emission of F → I splits into four peaks with the highest optical emission cross section of 2.14 × 10 cm at 1068 nm. The continuous-wave triple-wavelength generation of coherent light at 1047, 1071, and 1092 nm is achieved with the highest output power of 235 mW and efficiency of 12.1%.
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http://dx.doi.org/10.1021/jacs.2c04331 | DOI Listing |
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