Hazra Bidhan, Das Kamalika, Chandra Manabendra
Department of Chemistry, Indian Institute of Technology, Kanpur, Uttar Pradesh, India.
Phys Chem Chem Phys. 2017 Jul 19;19(28):18394-18399. doi: 10.1039/c7cp03478d.
The structure and morphology of nanomateials strongly influence their nonlinear optical properties. In this work, we report a systematic investigation of second order nonlinear optical responses and their structural dependencies in the case of a plasmonically hybrid nanostructure, hollow gold nanoprisms (HGNs). The first hyperpolarizabilities (β) of the HGNs have been measured using the two-photon Rayleigh scattering (TPRS) technique. The measured hyperpolarizability values are extremely large for the HGNs, larger than those for gold nanospheres or gold nanorods with similar size and surface area. The larger β values of the HGNs are due to a strong local electromagnetic field enhancement owing to efficient plasmon hybridization. We find that the β values for the HGNs studied here have a purely local dipolar origin, as confirmed by their surface area dependence. Moreover, the SH responses of the HGNs are found to be a linear function of their aspect ratios. Our results suggest that the nonlinear optical (NLO) properties of HGNs can be tailor made and utilized to suit various practical applications.
纳米材料的结构和形态强烈影响其非线性光学性质。在这项工作中,我们报告了对一种等离子体混合纳米结构——中空金纳米棱镜(HGNs)的二阶非线性光学响应及其结构依赖性的系统研究。已使用双光子瑞利散射(TPRS)技术测量了HGNs的第一超极化率(β)。对于HGNs,测得的超极化率值极大,比具有相似尺寸和表面积的金纳米球或金纳米棒的超极化率值还要大。HGNs较大的β值归因于高效等离子体杂交导致的强烈局部电磁场增强。我们发现,此处研究的HGNs的β值具有纯粹的局部偶极起源,这一点通过其对表面积的依赖性得到证实。此外,发现HGNs的二次谐波(SH)响应是其纵横比的线性函数。我们的结果表明,HGNs的非线性光学(NLO)性质可以定制并用于各种实际应用。