论文标题
非线性光学信号产生由等离子方位角旋转的光栅介导的
Nonlinear optical signal generation mediated by a plasmonic azimuthally chirped grating
论文作者
论文摘要
等离子体纳米结构的部署以增强非线性信号的产生需要有效的截然磁场耦合和相匹配以进行频率转换。尽管在等离子热点很容易实现后者,但前者是一个天线问题,需要专用的结构设计和优化。等离子光栅是非线性信号产生的简单但有效的平台,因为它们为光子色谱耦合和局部热点提供了明确定义的动量,用于频率转换。在这项工作中,利用了等离激元的旋转光栅(ACG)(ACG),可为光子平面耦合提供空间分辨的宽带动量,以研究两个非线性光学过程中的等离激元增强效应,即两次光子发光(TPPL)和秒荷兰(Shg)。非线性信号的空间分布是通过用超短脉冲激发的高光谱映射来实验确定的。非线性信号的实验空间分布与仅基于光子色谱偶联的分析预测与ACG的动量非常吻合,从而揭示了等离子非线性信号产生光栅的天线功能。这项工作强调了光栅对非线性信号产生的天线效应的重要性,并提供了对等离子光栅的增强机制,除了局部热点工程外。
The deployment of plasmonic nanostructures to enhance nonlinear signal generation requires effective far-to-near field coupling and phase matching for frequency conversion. While the latter can be easily achieved at plasmonic hotspots, the former is an antenna problem that requires dedicated structural design and optimization. Plasmonic gratings are a simple but effective platform for nonlinear signal generation since they provide a well-defined momentum for photon-plasmon coupling and local hotspots for frequency conversion. In this work, a plasmonic azimuthally chirped grating (ACG), which provides spatially resolved broadband momentum for photon-plasmon coupling, was exploited to investigate the plasmonic enhancement effect in two nonlinear optical processes, namely two-photon photoluminescence (TPPL) and second-harmonic generation (SHG). The spatial distributions of the nonlinear signals were determined experimentally by hyperspectral mapping with ultrashort pulsed excitation. The experimental spatial distributions of nonlinear signals agree very well with the analytical prediction based solely on photon-plasmon coupling with the momentum of the ACG, revealing the antenna function of the grating in plasmonic nonlinear signal generation. This work highlights the importance of the antenna effect of the gratings for nonlinear signal generation and provides insight into the enhancement mechanism of plasmonic gratings in addition to local hotspot engineering.