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通过金属纳米锥处的场增强实现的非线性光学点光源。

Nonlinear optical point light sources through field enhancement at metallic nanocones.

作者信息

Reichenbach Philipp, Horneber Anke, Gollmer Dominik A, Hille Andreas, Mihaljevic Josip, Schäfer Christian, Kern Dieter P, Meixner Alfred J, Zhang Dai, Fleischer Monika, Eng Lukas M

出版信息

Opt Express. 2014 Jun 30;22(13):15484-501. doi: 10.1364/OE.22.015484.

Abstract

A stable nonlinear optical point light source is investigated, based on field enhancement at individual, pointed gold nanocones with sub-wavelength dimensions. Exciting these cones with near-infrared, focused radially polarized femtosecond beams allows for tip-emission at the second harmonic wavelength (second harmonic generation, SHG) in the visible range. In fact, gold nanocones with ultra-sharp tips possess interesting nonlinear optical (NLO) properties for SHG and two-photon photoluminescence (TPPL) emission, due to the enhanced electric field confinement at the tip apex combined with centrosymmetry breaking. Using two complementary optical setups for bottom or top illumination a sharp tip SHG emission is discriminated from the broad TPPL background continuum. Moreover, comparing the experiments with theoretical calculations manifests that these NLO signatures originate either from the tip apex or the base edge of the nanocones, clearly depending on the cone size, the surrounding medium, and illumination conditions. Finally, it is demonstrated that the tip-emitted signal vanishes when switching from radial to azimuthal polarization.

摘要

基于亚波长尺寸的单个尖顶金纳米锥处的场增强,研究了一种稳定的非线性光学点光源。用近红外、径向偏振的聚焦飞秒光束激发这些纳米锥,可在可见光范围内实现二次谐波波长处的尖端发射(二次谐波产生,SHG)。实际上,具有超尖尖端的金纳米锥由于尖端顶点处增强的电场限制以及中心对称性破缺,在二次谐波产生(SHG)和双光子光致发光(TPPL)发射方面具有有趣的非线性光学(NLO)特性。使用两种互补的光学装置进行底部或顶部照明,可将尖锐的尖端SHG发射与宽泛的TPPL背景连续体区分开来。此外,将实验与理论计算进行比较表明,这些NLO特征要么源于纳米锥的尖端顶点,要么源于其底边,这显然取决于锥的尺寸、周围介质和照明条件。最后,结果表明,当从径向偏振切换到方位角偏振时,尖端发射的信号消失。

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