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Nonlinear three-wave interaction in photonic crystals

机译:光子晶体中的非线性三波相互作用

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We present a multi-scale analysis of nonlinear three-wave-interaction processes in photonic crystals. Based on photonic Bloch functions as carrier waves, we derive the effective nonlinear coupled wave equations that govern pulse propagation in these systems and obtain the corresponding effective photonic crystal parameters directly from photonic band-structure computations. As an illustration, we show how hitherto inaccessible radiation-conversion processes such as wave-front reversal of optical pulses can be realized. Furthermore, we describe a novel regime of nonlinear three-wave interaction in photonic crystals associated with the nearly degenerate case and show how these results may be utilized to study experimentally certain problems from plasma physics and hydrodynamics in the context of nonlinear photonic crystals.
机译:我们提出了光子晶体中非线性三波相互作用过程的多尺度分析。基于光子Bloch作为载波,我们推导了控制这些系统中脉冲传播的有效非线性耦合波方程,并直接从光子能带结构计算中获得了相应的有效光子晶体参数。作为说明,我们展示了如何实现迄今为止无法实现的辐射转换过程,例如光脉冲的波前反转。此外,我们描述了一种与近乎简并的情况相关的光子晶体中非线性三波相互作用的新机制,并展示了如何利用这些结果来研究非线性光子晶体中来自等离子体物理学和流体力学的某些问题。

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