论文标题
分级多模纤维中的非线性光束自维护效果
Nonlinear beam self-maintaining effect in graded-index multimode fiber
论文作者
论文摘要
多模纤维系统对于工业和科学应用是可取的。作为在多模纤维中激光束传播的有趣效果,非线性Kerr束清除吸引了由于空间束压缩而引起了相当大的研究兴趣。但是,其物理机制,尤其是输入条件对其性能的影响,尚不清楚。在这里,我们报告了一种新的自组织状态,用于分级折射率多模纤维中的多模束传播:当输入激光器具有主导模式时,大多数激光能量都集中在该模式下,则可以将光束轮廓保持在与非线性方向上的输入模式相似的明确定义的结构,同时它将在不规则的模式中进化为无规定的模式。实验和数值数据已经验证了这种非线性光束自我维护效应的存在和普遍性。我们的结果还提供了证据,表明非线性KERR效应可能是驱动机制,非线性Kerr束清除是这种效果的特定情况。对这种空间束构造效果的进一步研究可能为了解其他多模纤维非线性提供了新的观点。
Multimode fiber systems are desirable for industrial and scientific applications. As an interesting effect for the laser beam propagation in a multimode fiber, nonlinear Kerr beam cleanup has attracted considerable research interest due to the spatial beam compressing. However, its physical mechanisms, especially the influences of input conditions on its performances, remain unclear. Here, we report a new self-organized regime for the multimode beam propagation in a graded-index multimode fiber: when the input laser has a dominant mode in which most of the laser energy is concentrated, the beam profile can be maintaining in a well-defined structure similar to the input dominant mode in nonlinear regime, while it will evolve to an irregular pattern in linear regime. The existence and universality of this nonlinear beam self-maintaining effect have been verified by the experimental and numerical data. Our results also provide evidence that nonlinear Kerr effects can be the driving mechanism and nonlinear Kerr beam cleanup is a specific case of this effect. Further research into this spatial beam shaping effect may provide a new perspective to understand other multimode fiber nonlinearities.