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Second-harmonic generation in nanostructured metamaterials

机译:纳米结构超材料的二次谐波产生

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摘要

We conduct a theoretical and numerical study on the second-harmonic (SH) optical response of a nanostructured metamaterial composed of a periodic array of inclusions. Both the inclusions and their surrounding matrix are made of centrosymmetrical materials, for which SH is strongly suppressed, but, by appropriately choosing the shape of the inclusions, we may produce a geometrically noncentrosymmetric system which does allow efficient SH generation. Variations in the geometrical configuration allow tuning the linear and quadratic spectra of the optical response of the system. We develop a theory that allows the calculation of the nonlinear polarization from the geometry of the system and its linear dielectric function at the fundamental and second-harmonic frequencies, and we implement an efficient scheme for its numerical computation, extending a formalism for the calculation of the macroscopic dielectric function using Haydock's recursion method. We apply our formalism to an array of holes within an Ag matrix, but it can be readily applied to any metamaterial made of arbitrary materials and for inclusions of any geometry within the long-wavelength regime.
机译:我们对包含周期性排列的夹杂物的纳米结构超材料的二次谐波(SH)光学响应进行了理论和数值研究。夹杂物和它们周围的基体都是由中心对称材料制成的,SH受到强烈抑制,但是,通过适当选择夹杂物的形状,我们可以产生一个几何上非中心对称的系统,该系统的确可以有效地生成SH。几何构型的变化允许调整系统光学响应的​​线性和二次光谱。我们开发了一种理论,该理论允许从系统的几何形状及其在基波和二次谐波频率处的线性介电函数计算非线性极化,并为它的数值计算实现了一种有效的方案,从而扩展了形式学计算公式。使用Haydock递归方法的宏观介电函数。我们将形式主义应用于Ag矩阵中的一系列孔,但可以很容易地应用于由任意材料制成的任何超材料,以及长波长范围内任何几何形状的内含物。

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