Berthelot Johann, Bachelier Guillaume, Song Mingxia, Rai Padmnabh, Colas des Francs Gérard, Dereux Alain, Bouhelier Alexandre
Laboratoire Interdisciplinaire Carnot de Bourgogne CNRS-UMR 6303, Université de Bourgogne, Dijon, France.
Opt Express. 2012 May 7;20(10):10498-508. doi: 10.1364/OE.20.010498.
Amplifying local electromagnetic fields by engineering optical interactions between individual constituents of an optical antenna is considered fundamental for efficient nonlinear wavelength conversion in nanometer-scale devices. In contrast to this general statement we show that high field enhancement does not necessarily lead to an optimized nonlinear activity. In particular, we demonstrate that second-harmonic responses generated at strongly interacting optical gap antennas can be significantly suppressed. Numerical simulations are confirming silencing of second-harmonic in these coupled systems despite the existence of local field amplification. We then propose a simple approach to restore and amplify the second-harmonic signal by changing the manner in which electrically-connected optical antennas are interacting in the charge-transfer plasmon regime. Our observations provide critical design rules for realizing optimal structures that are essential for a broad variety of nonlinear surface-enhanced characterizations and for realizing the next generation of electrically-driven optical antennas.
通过设计光学天线单个组件之间的光学相互作用来增强局部电磁场,被认为是纳米级器件中高效非线性波长转换的基础。与这一普遍观点相反,我们表明高场增强并不一定导致优化的非线性活性。特别是,我们证明了在强相互作用的光学间隙天线处产生的二次谐波响应可以被显著抑制。数值模拟证实,尽管存在局部场放大,但在这些耦合系统中二次谐波仍被抑制。然后,我们提出了一种简单的方法,通过改变电连接的光学天线在电荷转移等离子体激元 regime 中相互作用的方式来恢复和放大二次谐波信号。我们的观察结果为实现最佳结构提供了关键的设计规则,这些结构对于广泛的非线性表面增强表征以及实现下一代电驱动光学天线至关重要。