论文标题
Epsilon-Near-near-Zero光子间隙天线中的宽带场增强
Broadband field-enhancement in epsilon-near-zero photonic gap antennas
论文作者
论文摘要
近年来,由所谓的Epsilon-Near-Zero(ENZ)模式支持的大型电场增强和紧密的空间限制,引起了人们对实现有效的非线性光学设备的极大关注。在这里,我们在实验上证明了一种新型的天线,称为ENZ光子间隙天线(PGA),该天线由介电柱组成,其中嵌入了二锡锡锡(ITO)材料的薄薄的平板。在enz PGA中,杂化介电 - enz模式从介电天线模式与ENZ散装等离子体共振之间的强耦合出现。这些混合动力模式有效地融入了空间,并允许在几乎八度带宽上大大增强入射电场,而无需传统的等离子或介电纳米安坦。单个ENZ PGA的线性响应使用黑场散射探测,并使用简单的耦合振荡器框架来解释。第三次谐波生成用于探测场的增强,并且在广泛的光谱范围内观察到大量增强。该概念证明证明了ENZ PGA的潜力,我们先前显示的ENZ PGA可以支持高达100--200X的电场增强功能,这与最佳的等离子天线相媲美。
In recent years, the large electric field enhancement and tight spatial confinement supported by the so-called epsilon-near-zero (ENZ) mode have attracted significant attention for the realization of efficient nonlinear optical devices. Here, we experimentally demonstrate a new type of antenna, termed an ENZ photonic gap antenna (PGA), which consists of a dielectric pillar within which a thin slab of indium tin oxide (ITO) material is embedded. In ENZ PGAs, hybrid dielectric-ENZ modes emerge from strong coupling between the dielectric antenna modes and the ENZ bulk plasmon resonance. These hybrid modes efficiently couple to free space and allow for large enhancements of the incident electric field over nearly an octave bandwidth, without the stringent lateral nanofabrication requirements required by conventional plasmonic or dielectric nanoantennas. The linear response of single ENZ PGAs is probed using dark field scattering and interpreted using a simple coupled oscillator framework. Third harmonic generation is used to probe the field enhancement and large enhancements are observed in the THG efficiency over a broad spectral range. This proof of concept demonstrates the potential of ENZ PGAs, which we have previously shown can support electric field enhancements of up to 100--200X, which is comparable with those of the best plasmonic antennas.