首页> 外文期刊>Journal of nonlinear optical physics & materials >LIGHT SELF-LOCALIZATION IN NEMATIC LIQUID CRYSTALS: MODELLING SOLITONS IN NONLOCAL REORIENTATIONAL MEDIA
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LIGHT SELF-LOCALIZATION IN NEMATIC LIQUID CRYSTALS: MODELLING SOLITONS IN NONLOCAL REORIENTATIONAL MEDIA

机译:液态液晶中的自位光:非局部取向介质中的孤子建模

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摘要

We review the mathematical modelling of propagation and specific interactions of solitary beams in nematic liquid crystals — so-called nematicons. The theory is first developed for the evolution of a single nematicon; then it is extended to the interaction of two nematicons of different wavelengths, employing linear momentum conservation equations to predict that two colour nematicons can form a vector bound state. Considering optical vortices, we show that the nonlocal response of liquid crystals stabilises a single vortex, unstable in local media. Moreover, the interaction with a nematicon in another colour can stabilise a vortex for nonlocalities far below those at which an isolated vortex remains unstable. When multiple nematicons of the same wavelength interact, the radiation they shed can join them together, still resulting in a vortex. Finally, we discuss the escape of a nematicon from a nonlinear waveguide, using simple modulation theory based on momentum conservation to model the effect and get excellent agreement with the experimental results.
机译:我们回顾了向列型液晶(所谓的向列型)中孤束的传播和特定相互作用的数学模型。该理论首先是为单个线虫的进化而开发的。然后将其扩展到两个不同波长的向列子的相互作用,利用线性动量守恒方程来预测两个颜色向列子可以形成一个矢量束缚态。考虑到光学涡旋,我们表明液晶的非局部响应稳定了单个涡旋,在局部介质中不稳定。而且,与另一种颜色的线虫的相互作用可以使涡旋稳定,使非局部性远​​低于孤立涡旋保持不稳定的非局部性。当多个相同波长的线虫相互作用时,它们散发出的辐射会将它们结合在一起,仍然会产生涡旋。最后,我们使用基于动量守恒的简单调制理论对线虫从非线性波导中逃逸进行了建模,以模拟该效应,并与实验结果取得了很好的一致性。

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