论文标题
在不匹配的双核高度非线性纤维中的孤子脉冲的自我捕获和切换
Self-trapping and switching of solitonic pulses in mismatched dual-core highly nonlinear fibers
论文作者
论文摘要
我们在实验和理论上对核间传播不匹配的实验和理论上对双核高折叠式柔软玻璃光纤中的非线性切换进行了研究。各种能量的飞秒脉冲入射,将其馈入单个(“直”)核心,以识别不同动力学状态,即,核心间振荡,横芯中的自我捕获,并将脉冲保留在直芯中。具有孤子特征的通道之间的转移受脉冲能量控制。基于耦合非线性schrödinger方程系统的模型揭示了不匹配参数和脉冲持续时间对各种依赖能量动力学制度图的影响。确定了不匹配和脉冲宽度的最佳值,这些值确定了非线性切换的稳定性能。理论预测与实验发现一致。
We investigate experimentally and theoretically effects of the inter-core propagation mismatch on nonlinear switching in dual-core high-index-contrast soft-glass optical fibers. Incident femtosecond pulses of various energy are fed into a single ("straight") core, to identify transitions between different dynamical regimes, viz., inter-core oscillations, self-trapping in the cross core, and retaining the pulse in the straight core. The transfer between channels, which has solitonic character, is controlled by the pulse's energy. A model based on the system of coupled nonlinear Schrödinger equations reveals the effect of the mismatch parameter and pulse duration on the diagram of the various energy dependent dynamical regimes. Optimal values of the mismatch and pulse width, which ensure stable performance of the nonlinear switching, are identified. The theoretical predictions are in agreement with experimental findings.