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High Absorption and Second-Harmonic Generation in Split Ring Resonator Multilayer Nanostructure

机译:开环谐振器多层纳米结构中的高吸收和二次谐波产生。

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摘要

Second-harmonic generation in split ring resonator multilayer nanostructure is studied with the finite-difference time-domain (FDTD) method. The fundamental frequency wave and the second-harmonic generation at the resonant absorption wavelength are highly localized in the dielectric layer, and the absorption peak is sensitive to dielectric constant of the dielectric layer. Under the excitation of the plasmon resonances mode, the strong local field induces an expected increase of the second-harmonic generation with conversion efficiencies 10−6-10−7. The distributions of fundamental frequency electric field and second-harmonic electric field inside the central dielectric layer region are also shown.
机译:用时域有限差分法(FDTD)研究了裂环谐振器多层纳米结构的二次谐波产生。共振吸收波长处的基频波和二次谐波产生高度局限在介电层中,并且吸收峰对介电层的介电常数敏感。在等离振子共振模式的激发下,强局部场以转换效率10-6-10-7诱导了预期的二次谐波产生的增加。还示出了中心介电层区域内部的基频电场和二次谐波电场的分布。

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