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Strong second-harmonic generation from Au-Al heterodimers

机译:根据Au-Al生成强大的二次谐波形成

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摘要

Second-harmonic generation (SHG) is investigated from three kinds of lithographically fabricated plasmonic systems: Al monomers, Au monomers and Au-Al heterodimers with nanogaps of 20 nm. Spectrally integrated SHG intensities and the linear optical responses are recorded and compared. The results show that for the monomer nanoantennas, the SHG signal depends sensitively on the linear excitation of the plasmon resonance by the fundamental wavelength. For Au-Al heterodimer nanoantennas, apart from fundamental resonant excitation, nonlinear optical factors such as SH driving fields and phase interferences need to be taken into account, which play significant roles at the excitation and scattering stages of SHG radiation. It is interesting to note that a possible energy transfer process could take place between the two constituting nanoparticles (NPs) in the Au-Al heterodimers. Excited at the linear plasmon resonance, the Au NP transfers the absorbed energy from the fundamental field to the nearby Al NP, which efficiently scatters SHG to the far-field, giving rise to an enhanced SHG intensity. The mechanisms reported here provide new approaches to boost the far-field SHG radiation by taking full advantage of strongly coupled plasmonic oscillations and the synergism from materials of different compositions.
机译:二次谐波产生(宋惠乔)调查从三种光刻捏造电浆系统:单体,非盟单体Au-Al与nanogaps形成20海里。幽灵似地宋惠乔强度和集成线性光学记录和反应比较。nanoantennas,宋惠乔信号取决于敏感线性激发的等离子体共振基本的波长。异质二聚体nanoantennas,除了基本的共振激发,非线性光学因素如SH干扰驾驶领域和阶段需要考虑,玩在激发和重要的角色宋惠乔辐射的散射阶段。有趣的注意,一个可能的能量这两个之间传输过程可能发生Au-Al构成纳米颗粒(NPs)形成。共振,非盟NP转移吸收从基本场附近的能量艾尔NP,这有效地散射宋惠乔远场,一个增强宋惠乔强度。提振远场宋惠乔的新方法辐射强烈的充分利用耦合电浆振荡和合作从材料不同的成分。

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