Abstract A fast Huygens sweeping method for capturing paraxial multi-color optical self-focusing in nematic liquid crystals
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A fast Huygens sweeping method for capturing paraxial multi-color optical self-focusing in nematic liquid crystals

机译:一种快速的Huygens扫描方法,用于捕获向列液晶的近轴多色光学自聚焦

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Abstract We propose a numerically efficient algorithm for simulating the multi-color optical self-focusing phenomena in nematic liquid crystals. The propagation of the nematicon is modeled by a parabolic wave equation coupled with a nonlinear elliptic partial differential equation governing the angle between the crystal and the direction of propagation. Numerically, the paraxial parabolic wave equation is solved by a fast Huygens sweeping method, while the nonlinear elliptic PDE is handled by the alternating direction explicit (ADE) method. The overall algorithm is shown to be numerically efficient for computing high frequency beam propagations. Highlights ? A simple strategy can already improve the fast Huygens sweeping method for high frequency asymptotic solutions. ? The Alternating Direction Explicit method can significant improve the computational efficiency. ? Numerical solutions match the Fredericks transition. ]]>
机译:<![cdata [ Abstract 我们提出了一种用于在向列液晶中模拟多色光学自聚焦现象的数值有效的算法。 Nematicon的传播通过耦合的抛物线波形方程,其与控制晶体和传播方向之间的角度的非线性椭圆局部微分方程。在数值上,通过快速Huygens扫描方法解决了瘫痪抛物线波动方程,而非线性椭圆PDE由交替方向显式(ADE)方法处理。该整体算法显示为计算高频波束传播的数值有效。 突出显示 一种简单的策略已经可以提高高频渐近解决方案的快速Huygens扫描方法。 交替方向显式方法可以显着提高计算效率。 数字解决方案s匹配弗雷德里克转换。 ]] >

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