论文标题
宽带场的增强和巨大的非线性效应在终止单向等离子波导中
Broadband field enhancement and giant nonlinear effects in terminated unidirectional plasmonic waveguides
论文作者
论文摘要
非重点结构中的单向波传播带来了激动人心的机会,以极端方式控制和增强波浪 - 物质相互作用。在这种情况下,我们在这里研究了使用终止单向等离子波导的可能性,以增强通常通过数量级弱的非线性效应。从理论上讲,当单向波引导结构以合适的边界终止,完全停止单向模式时,我们从理论上表明电场增强和限制(场热点)。如此大的场增强,源自非谐波效应,与谐振等离子体结构的窄带场浓度效应根本不同。取而代之的是,它类似于等离子锥度的宽带响应,但不需要任何绝热阻抗匹配。我们表明,这种效果确实可以导致非线性光 - 物质相互作用的实质性提高,这体现了第三谐波产生效率的几个数量级的改善,这对几种应用来说具有很大的意义。更广泛地说,我们的发现表明了极端非倒数构型的潜力,以增强波浪的相互作用。
Unidirectional wave propagation in nonreciprocal structures enables exciting opportunities to control and enhance wave-matter interactions in extreme ways. Within this context, here we investigate the possibility of using terminated unidirectional plasmonic waveguides to enhance typically weak nonlinear effects by orders of magnitude. We theoretically demonstrate remarkable levels of electric field enhancement and confinement (field hot-spots) when the unidirectional waveguiding structure is terminated with a suitable boundary that fully stops the one-way mode. Such a large field enhancement, originating from a nonresonant effect, is fundamentally different from the narrow-band field concentration effects in resonant plasmonic structures. Instead, it is analogous to the broadband response of plasmonic tapers, but without the need for any adiabatic impedance matching. We show that this effect can indeed lead to a substantial boosting of nonlinear light-matter interactions, exemplified by an improvement of several orders of magnitude in the third-harmonic-generation efficiency, which is of large significance for several applications. More broadly, our findings show the potential of extreme nonreciprocal configurations for enhanced wave-matter interactions.