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Discrete temporal solitons along a chain of nonlinear coupled microcavities embedded in photonic crystals

机译:沿着嵌入光子晶体的非线性耦合微腔链的离散时间孤子

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摘要

We demonstrate that spatiotemporal discrete solitons are possible in nonlinear photonic crystal structures. Analysis indicates that these states can propagate undistorted along a series of coupled resonators or defects by balancing of the effects of discrete lattice dispersion with material nonlinearity. In principle, these self-localized entities are capable of exhibiting very low velocities, depending on the coupling coefficient among successive microcavities. This class of solitons can follow any preassigned path in a three-dimensional environment.
机译:我们证明时空离散孤子在非线性光子晶体结构中是可能的。分析表明,通过平衡离散晶格分散效应与材料非线性,这些状态可以沿着一系列耦合的谐振器或缺陷无畸变地传播。原则上,根据连续微腔之间的耦合系数,这些自定位实体能够表现出非常低的速度。此类孤子可以在三维环境中遵循任何预先指定的路径。

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