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Second harmonic generation from an ITO nanolayer: experiment versus theory

机译:ITO纳米层产生二次谐波:实验与理论

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We report a comparative experimental and theoretical study of second harmonic generation from a 20nm-thick indium tin oxide nanolayer in the proximity of the epsilon-near-zero condition. We record the efficiency of the second harmonic signal both as a function of wavelength as well as of the angle of incidence around the epsilon-near-zero crossing point. We compare our experimental results with numerical simulations based on a hydrodynamical model able to capture all major physical mechanisms driving the electrodynamic behavior of conductive oxide layers, with unique aspects of the different nonlinear sources. We found a very good quantitative and qualitative agreement between experiment and theory.
机译:我们报告了在ε接近零的条件附近从20nm厚的铟锡氧化物纳米层产生二次谐波的对比实验和理论研究。我们记录了二次谐波信号的效率,该效率既是波长的函数,也是ε-近零交叉点附近入射角的函数。我们将实验结果与基于水动力模型的数值模拟进行比较,该模型能够捕获驱动导电氧化物层电动力学行为的所有主要物理机制,并具有不同非线性源的独特方面。我们发现实验和理论之间有很好的定量和定性一致性。

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