论文标题

振动耦合到Epsilon-Near-Zero波导模式

Vibrational Coupling to Epsilon-Near-Zero Waveguide Modes

论文作者

Folland, Thomas G., Lu, Guanyu, Bruncz, A., Nolen, J. Ryan, Tadjer, Marko, Caldwell, Joshua D.

论文摘要

零模式附近的Epsilon提供了极端的场增强,可用于开发增强的感应方案。然而,增强的光谱镜的演示在很大程度上剥削了表面极化子,这主要是由于将振动过渡到零模式附近的体积固定的Epsilon耦合所面临的挑战。在这里,我们为4H-SIC制造高纵横比的光栅(高度高24.8 um,高度超过5μm),具有谐振的模式,这些模式可横向磁和横向电动入射场。这些对应于向下传播到底物的金属 - 金属 - 金属波导模式。由波导的有限长度形成的空腔允许强烈吸收入射红外光(> 80%),Q因子超过90,其中包括epsilon在零波导模式附近,εeff= 0.0574+0.008i。电磁场在光栅牙齿之间的差距中的定位表明,有机会实现在液体环境中研究振动耦合的新平台,并有可能增强光谱镜的机会。我们表明,这些模式在无水和水性环境中得到支持,并且高纵横比的光栅连贯地与周围液体中的振动过渡相连。

Epsilon near zero modes offer extreme field enhancement that can be utilized for developing enhanced sensing schemes. However, demonstrations of enhanced spectroscopies have largely exploited surface polaritons, mostly due to the challenges of coupling a vibrational transition to volume-confined epsilon near zero modes. Here we fabricate high aspect ratio gratings (up to 24.8 um height with greater than 5 μm pitch) of 4H-SiC, with resonant modes that couple to transverse magnetic and transverse electric incident fields. These correspond to metal-insulator-metal waveguide modes propagating downwards into the substrate. The cavity formed by the finite length of the waveguide allows for strong absorption of incident infrared light (>80%) with Q factors in excess of 90, including an epsilon near zero waveguide mode with εeff=0.0574+0.008i. The localization of the electromagnetic fields within the gap between the grating teeth suggests an opportunity to realize a new platform for studying vibrational coupling in liquid environments, with potential opportunities for enhanced spectroscopies. We show that these modes are supported in anhydrous and aqueous environments, and that high aspect ratio gratings coherently couple to the vibrational transition in the surrounding liquid.

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