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首页> 外文期刊>Nano letters >Coupled One-Dimensional Plasmons and Two-Dimensional Phonon Polaritons in Hybrid Silver Nanowire/Silicon Carbide Structures
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Coupled One-Dimensional Plasmons and Two-Dimensional Phonon Polaritons in Hybrid Silver Nanowire/Silicon Carbide Structures

机译:耦合杂交银纳米线/碳化硅结构中的一维等离子和二维声子极化子

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摘要

Surface plasmons (SPs) and phonon polaritons (PhPs) are two: distinctive quasiparticles resulting from the strong coupling of photons with electrons and optical phonons, respectively. In this Letter, we investigate the interactions between one-. dimensional (1D) plasmons in silver nanowires with two-dimensional (2D) surface phonon polaritons of the silicon carbide (SiC) substrate. Using near-field infrared spectroscopy of the silver nanowire-SiC heterostructure at wavelengths close to the phonon resonance of SiC, we observe that the 1D plasmon dispersion is strongly modified by the 2D phonon polaritons in SiC. In particular, we observe for the first time well-defined 1D plasmon oscillations with the plasmon wavelengths longer than the free-space photon wavelengths due to the 1D plasmon-2D phonon polariton coupling. Our work demonstrates that unusual polariton behavior can emerge from interactions between polariton excitons of different dimensionality, which can enable new ways to engineer plasmons in hybrid structures.
机译:表面等离子体(SPS)和声子极化子(PHP)是两个:由光子与电子和光学声子的强耦合产生的独特Quasiply。在这封信中,我们调查了一个人之间的相互作用。银纳米线中的尺寸(1D)等离子体,具有二维(2D)表面声子碳化硅(SiC)基板的偏振子。在靠近SiC的声子共振的波长下使用近场红外光谱,在靠近SiC的波长,我们观察到SiC中的2D声子极性恒弦强烈修改1D等离子体分散体。特别地,我们观察第一次定义的1D等离子体振荡,这些等离子体波长长于由于1D等离子体-2D声子偏振子耦合而长于自由空间光子波长的比较。我们的工作表明,不寻常的Polariton行为可以从不同维度的ParitIton激子之间的相互作用中出现,这可以在混合结构中为工程师等级来实现新的方式。

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