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The resonant nonlinear scattering theory with bound states in the radiation continuum and the second harmonic generation

机译:辐射连续体中具有束缚态和二次谐波产生的共振非线性散射理论。

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A nonlinear electromagnetic scattering problem is studied in the presence of bound states in the radiation continuum (or resonances with the vanishing width). It is shown that the solution is not analytic in the nonlinear susceptibility and the conventional perturbation theory fails due to strong evanescent fields that necessarily occur if the scattering system has resonances with the vanishing width. A non-perturbative approach is developed. It is then applied to the system of two parallel periodic subwavelength arrays of dielectric cylinders with a second order nonlinear susceptibility. This scattering system is known to have bound states in the radiation continuum. In particular, it is demonstrated that, for a wide range of values of the nonlinear susceptibility, the structure converts over 40% of the incident fundamental harmonic flux into the outgoing second harmonic flux when the distance between the arrays is as low as a half of the incident radiation wavelength. The effect is non-perturbative and solely attributed to the presence of bound states in the radiation continuum. The example demonstrates that bounds states in the radiation continuum can be used to substantially enhance and control optically nonlinear effects in nanophotonic devices.
机译:在辐射连续体中存在束缚态(或宽度消失的共振)的情况下,研究了非线性电磁散射问题。结果表明,该解决方案在非线性磁化率方面不是解析性的,并且常规的扰动理论由于在散射系统具有消失宽度的共振时必定会发生的强渐逝场而失败。开发了一种非扰动方法。然后将其应用于具有二阶非线性磁化率的介电圆柱体的两个平行周期子波长阵列的系统。已知该散射系统在辐射连续体中具有束缚态。尤其是,证明了,对于较大的非线性磁化率值,当阵列之间的距离低至一半时,该结构会将入射的基本谐波通量的40%以上转换为输出的二次谐波通量。入射辐射波长。该效应是非扰动的,并且仅归因于辐射连续体中束缚态的存在。该示例表明,辐射连续体中的束缚态可用于实质上增强和控制纳米光子器件中的光学非线性效应。

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