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Bending reorientational solitons with modulated alignment

机译:用调制对齐弯曲重新定位孤子

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摘要

While curved waveguides are fundamental elements in photonics, those induced all optically in nonlinear uniform dielectrics tend to be straight. In uniaxial soft matter with a reorientational response, such as nematic liquid crystals (NLCs), light beams in the extraordinary polarization undergo self-focusing via an increase in refractive index and eventually form spatial solitons, i.e., self-induced waveguides. Hereby we investigate the bending of such waveguides by analyzing the trajectory of solitons in NLCs-nematicons-in the presence of a linearly varying transverse orientation of the optic axis. To this extent, we use and compare two approaches: i) a slowly varying (adiabatic) approximation based on momentum conservation of the nematicon in a Hamiltonian sense; and ii) the Frank-Oseen elastic theory coupled with a fully vectorial and nonlinear beam propagation method. The models provide comparable results in such a non-homogeneously oriented uniaxial medium and predict bent soliton paths with either monotonic or non-monotonic curvatures, enabling the design of curved channel waveguides induced by light beams. (C) 2017 Optical Society of America
机译:虽然弯曲波导是光子学中的基本元件,但在非线性均匀介质中以光学方式诱导的弯曲波导往往是直的。在具有重取向响应的单轴软物质中,如向列相液晶(NLC),具有特殊偏振的光束通过折射率的增加经历自聚焦,最终形成空间孤子,即自诱导波导。因此,我们通过分析光轴横向方向线性变化时NLCs向列相孤子的轨迹来研究这种波导的弯曲。在这个程度上,我们使用并比较了两种方法:i)基于哈密顿意义下向列粒子动量守恒的慢变(绝热)近似;ii)Frank-Oseen弹性理论与全矢量和非线性光束传播方法相结合。这些模型在这种非均匀取向的单轴介质中提供了可比较的结果,并预测了曲率为单调或非单调的弯曲孤子路径,从而实现了由光束诱导的弯曲通道波导的设计。(C) 2017美国光学学会

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