Müller André, Vijayakumar Deepak, Jensen Ole Bjarlin, Hasler Karl-Heinz, Sumpf Bernd, Erbert Götz, Andersen Peter E, Petersen Paul Michael
DTU Fotonik, Department of Photonics Engineering, Technical University of Denmark, Roskilde, Denmark.
Opt Express. 2011 Jan 17;19(2):1228-35. doi: 10.1364/OE.19.001228.
Up to 16 W output power has been obtained using spectral beam combining of two 1063 nm DBR-tapered diode lasers. Using a reflecting volume Bragg grating, a combining efficiency as high as 93.7% is achieved, resulting in a single beam with high spatial coherence. The result represents the highest output power achieved by spectral beam combining of two single element tapered diode lasers. Since spectral beam combining does not affect beam propagation parameters, M2-values of 1.8 (fast axis) and 3.3 (slow axis) match the M2-values of the laser with lowest spatial coherence. The principle of spectral beam combining used in our experiments can be expanded to combine more than two tapered diode lasers and hence it is expected that the output power may be increased even further in the future.
通过对两台1063 nm分布布拉格反射(DBR)锥形二极管激光器进行光谱合束,已获得高达16 W的输出功率。使用反射体布拉格光栅,实现了高达93.7%的合束效率,产生了具有高空间相干性的单束光。该结果代表了两台单元素锥形二极管激光器光谱合束所实现的最高输出功率。由于光谱合束不影响光束传播参数,1.8(快轴)和3.3(慢轴)的M²值与空间相干性最低的激光器的M²值相匹配。我们实验中使用的光谱合束原理可以扩展到组合两台以上的锥形二极管激光器,因此预计未来输出功率可能会进一步提高。