Wu Tsai-wei, Chang Wei-zung, Galvanauskas Almantas, Winful Herbert G
Department of Electrical Engineering and Computer Science, University of Michigan, Ann Arbor, MI, 48109, USA.
Opt Express. 2009 Oct 26;17(22):19509-18. doi: 10.1364/OE.17.019509.
We present a new model for studying the beam combining mechanism, spectral and temporal dynamics, the role of nonlinearity, and the power scaling issue of discretely coupled fiber laser arrays. The model accounts for the multiple longitudinal modes of individual fiber lasers and shows directly the formation of the composite-cavity modes. Detailed output power spectra and their evolution with increasing array size and pump power are also explored for the first time. In addition, it is, to our knowledge, the only model that closely resembles the real experimental conditions in which no deliberate control of the fiber lengths (mismatch) is required while highly efficient coherent beam combining is still attained.
我们提出了一种新模型,用于研究离散耦合光纤激光器阵列的光束合成机制、光谱和时间动态特性、非线性的作用以及功率缩放问题。该模型考虑了单个光纤激光器的多个纵向模式,并直接展示了复合腔模式的形成。首次详细探究了输出功率谱及其随阵列尺寸和泵浦功率增加的演变。此外,据我们所知,这是唯一一种与实际实验条件非常相似的模型,在该模型中,无需刻意控制光纤长度(失配),仍可实现高效的相干光束合成。