三维abc层合元晶体产生二次谐波(会议报告)

A. Wickberg, A. Abass, H. Hsiao, C. Rockstuhl, M. Wegener
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引用次数: 0

摘要

我们最近介绍了由原子层沉积的介电ABC层序列组成的层状超材料。ABC序列打破了反转对称,允许二次谐波的产生。在这里,我们讨论了用这种ABC层压板超材料共形涂覆的3D聚合物木堆光子晶体(未发表)。在我们的实验中,在大约800-900 nm的基本波长下,这种具有24层和600 nm棒间距的元晶体,我们发现与在平面玻璃基板上的相同ABC层压相比,二次谐波转换效率提高了1000倍(相对于基板和p偏振的45度入射角)。为了阐明潜在的机制,我们在解决基波全波问题的基础上进行了广泛的数值计算,计算了假设ABC层压板张量元素的二次谐波三维源项分布,并数值计算了由此产生的发射二次谐波。分析表明,这种增强与三维元晶体板内部基波长处的导模共振激励一致,导致驻波行为,提供有益的局部场增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Second-harmonic generation by 3D ABC-laminate meta-crystals (Conference Presentation)
We recently introduced laminate metamaterials composed of a dielectric ABC layer sequence made by atomic-layer deposition. The ABC sequence breaks inversion symmetry, allowing for second-harmonic generation. Here, we discuss 3D polymeric woodpile photonic crystals conformally coated with such ABC laminate metamaterials (unpublished). In our experiments on such meta-crystals with 24 layers and 600 nm rod spacing at around 800-900 nm fundamental wavelength, we find up to 1000-fold enhancement of the second-harmonic conversion efficiency as compared to the same ABC laminate on a planar glass substrate (for 45 degrees angle of incidence with respect to the substrate and p-polarization). To clarify the underlying mechanism, we have performed extensive numerical calculations based on solving the full-wave problem for the fundamental wave, computing the second-harmonic 3D source-term distribution assuming tensor elements for the ABC laminate as found previously, and numerically computing the resulting emitted second-harmonic wave. This analysis indicates that the enhancement is consistent with guided-mode resonant excitations at the fundamental wavelength inside of the 3D meta-crystal slab, leading to a standing-wave behavior providing beneficial local-field enhancements.
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