论文标题

从金纳米响应阵列中的第二个谐波响应的波长和极化依赖性

Wavelength and Polarization Dependence of Second Harmonic Responses from Gold Nanocrescent Arrays

论文作者

Maekawa, Hiroaki, Drobnyh, Elena, Lancaster, Cady A., Large, Nicolas, Schatz, George C., Shumaker-Parry, Jennifer S., Sukharev, Maxim, Ge, Nien-Hui

论文摘要

在非线性等离子体学的发展领域中,重要的是要了解金属纳米结构的局部表面等离子体共振(LSPR)之间的基本关系及其非线性光学响应。对具有良好特征LSPR的纳米结构的非线性响应的详细理解是具有高级功能以控制光的复杂等离子系统的未来设计的必要先决条件。在本文中,我们研究了来自金纳米(AU NC)天线的二阶谐波(SH)响应,这些响应在可见的和近红外波长范围内具有波长和极化敏感的LSPR。 SH强度的波长依赖性表现出与吸光光谱中偶极子LSPR带不同的光谱曲线。当在偶极子带上调谐激发波长时,发现入射极角依赖性显着变化。对AU NC阵列进行了有限差分时间域计算,并与非线性流体动力模型进行了研究,以研究传入基本和发射SH光的局部场的增强。实验和理论结果表明,在SH波长下发生的高阶LSPR(例如四极和多极共振)的影响对于管理SH生成过程很重要。同样,表明SH信号的入射极化角依赖性对NC形状的纳米级变化非常敏感。

In the developing field of nonlinear plasmonics, it is important to understand the fundamental relationship between properties of the localized surface plasmon resonance (LSPR) of metallic nanostructures and their nonlinear optical responses. A detailed understanding of nonlinear responses from nanostructures with well characterized LSPRs is an essential prerequisite for the future design of sophisticated plasmonic systems with advanced functions to control light. In this article, we investigate the second order harmonic (SH) responses from gold nanocrescent (Au NC) antennas which have wavelength and polarization sensitive LSPRs in the visible and near-infrared wavelength range. The wavelength dependence of the SH intensity exhibits spectral profiles different from dipole LSPR bands in absorbance spectra. The incident polarization angle dependence was found to vary significantly when the excitation wavelength was tuned over the dipole band. Finite-difference time-domain calculations coupled with a nonlinear hydrodynamic model were carried out for Au NC arrays to investigate the local field enhancement of the incoming fundamental and emitting SH light. The experimental and theoretical results indicate that the effects of higher order LSPRs, such as quadrupole and multipole resonances, occurring at SH wavelengths are important in governing the SH generation process. Also, it is shown that the incident polarization angle dependence of SH signals is very strongly sensitive to nanoscale variations in the NC shape.

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