Surface Phonon Polariton Ellipsometry

Giulia Carini, Richarda Niemann, Niclas Sven Mueller, Martin Wolf, Alexander Paarmann
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Abstract

Surface phonon polaritons (SPhPs) have become a key ingredient for infrared nanophotonics, owing to their long lifetimes and the large number of polar dielectric crystals supporting them. While these evanescent modes have been thoroughly characterized by near-field mapping or far-field intensity measurements over the last decade, far-field optical experiments also providing phase information are less common. In this paper, we study surface phonon polaritons at the gallium phosphide (GaP)-air interface in the momentum domain using the Otto-type prism coupling geometry. We combine this method with spectroscopic ellipsometry to obtain both amplitude and phase information of the reflected waves across the entire reststrahlen band of GaP. By adjusting the prism-sample air gap width, we systematically study the dependence of the ellipsometry parameters on the optical coupling efficiency. In particular, we show that the combined observation of both ellipsometry parameters - amplitude and phase - provides a powerful tool for the detection of SPhPs, even in the presence of high optical losses. Finally, we theoretically study how surface phonon polariton ellipsometry can reveal the emergence of vibrational strong coupling through changes in the topology of their complex plane trajectories, opening up a new perspective on light-matter coupling.
表面声子极化椭偏仪
由于表面声子极化子(SPhPs)的寿命长,而且有大量极性电晶体支持它们,因此已成为红外纳米光子学的关键成分。在过去的十年中,这些蒸发模式已经通过近场绘图或远场强度测量得到了充分的表征,但同时提供相位信息的远场光学实验却并不常见。在本文中,我们利用奥托型棱镜耦合几何,在动量域研究了磷化镓(GaP)-空气界面的表面声子极化子。我们将这种方法与光谱椭偏仪相结合,获得了反射波在整个磷化镓剩斯特伦波段的振幅和相位信息。通过调整棱镜-样品气隙宽度,我们系统地研究了椭偏仪参数对光耦合效率的依赖性。特别是,我们发现,即使在高光学损耗的情况下,对椭偏仪的两个参数--振幅和相位--的综合观测也能为探测 SPhPs 提供有力的工具。最后,我们从理论上研究了表面phon极化子椭偏仪如何通过改变其复杂平面轨迹的拓扑结构来揭示振动强耦合的出现,为光-物质耦合开辟了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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