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定量近场显微镜揭示金的光学损耗极限。

Ultimate Limit for Optical Losses in Gold, Revealed by Quantitative Near-Field Microscopy.

机构信息

Centre for Nano Optics, University of Southern Denmark, 5230 Odense, Denmark.

Institute for Experimental and Applied Physics, Kiel University, 24118 Kiel, Germany.

出版信息

Nano Lett. 2022 Jul 27;22(14):5759-5764. doi: 10.1021/acs.nanolett.2c01059. Epub 2022 Jul 5.

Abstract

We report thorough measurements of surface plasmon polaritons (SPPs) running along nearly perfect air-gold interfaces formed by atomically flat surfaces of chemically synthesized gold monocrystals. By means of amplitude- and phase-resolved near-field microscopy, we obtain their propagation length and effective mode index at visible wavelengths (532, 594, 632.8, 729, and 800 nm). The measured values are compared with the values obtained from the dielectric functions of gold that are reported in literature. Importantly, a reported dielectric function of monocrystalline gold implies ∼1.5 times shorter propagation lengths than those observed in our experiments, whereas a dielectric function reported for properly fabricated polycrystalline gold leads to SPP propagation lengths matching our results. We argue that the SPP propagation lengths measured in our experiments signify the ultimate limit of optical losses in gold, encouraging further comprehensive characterization of optical material properties of pure gold as well as other plasmonic materials.

摘要

我们报道了在由化学合成的金单晶原子级平整表面形成的近乎完美的空气-金界面上传播的表面等离激元(SPP)的全面测量。通过幅度和相位分辨近场显微镜,我们获得了它们在可见波长(532、594、632.8、729 和 800nm)下的传播长度和有效模式指数。测量值与文献中报道的金的介电函数值进行了比较。重要的是,报道的单晶金的介电函数意味着比我们实验中观察到的传播长度短约 1.5 倍,而对于适当制备的多晶金的介电函数则导致与我们的结果相匹配的 SPP 传播长度。我们认为,我们实验中测量的 SPP 传播长度代表了金中光损耗的极限,这鼓励对纯金以及其他等离子体材料的光学材料特性进行更全面的表征。

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