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New avenues for phase matching in nonlinear hyperbolic metamaterials

机译:非线性双曲超材料中相匹配的新途径

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摘要

Nonlinear optical processes, which are of paramount importance in science and technology, involve the generation of new frequencies. This requires phase matching to avoid that light generated at different positions interferes destructively. Of the two original approaches to achieve this, one relies on birefringence in optical crystals, and is therefore limited by the dispersion of naturally occurring materials, whereas the other, quasi-phase-matching, requires direct modulation of material properties, which is not universally possible. To overcome these limitations, we propose to exploit the unique dispersion afforded by hyperbolic metamaterials, where the refractive index can be arbitrarily large. We systematically analyse the ensuing opportunities and demonstrate that hyperbolic phase matching can be achieved with a wide range of material parameters, offering access to the use of nonlinear media for which phase matching cannot be achieved by other means. With the rapid development in the fabrication of hyperbolic metamaterials, our approach is destined to bring significant advantages over conventional techniques for the phase matching of a variety of nonlinear processes.
机译:非线性光学过程在科学技术中至关重要,它涉及到新频率的产生。这需要相位匹配,以避免在不同位置产生的光产生相消干涉。在实现此目的的两种原始方法中,一种方法依赖于光学晶体中的双折射,因此受到自然材料分散的限制,而另一种方法是准相位匹配,需要直接调节材料性能,这并不是普遍适用的。可能。为了克服这些限制,我们建议利用双曲线超材料提供的独特色散,其中折射率可以任意大。我们系统地分析了随之而来的机会,并证明可以通过广泛的材料参数来实现双曲相匹配,从而提供了使用非线性介质进行相位匹配无法通过其他方式实现的访问。随着双曲线超材料制造的飞速发展,我们的方法注定要比传统技术带来许多非线性过程的相位匹配的显着优势。

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