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首页> 外文期刊>International journal of applied mechanics >Three-dimensional near-field analysis through peak force scattering-type near-field optical microscopy
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Three-dimensional near-field analysis through peak force scattering-type near-field optical microscopy

机译:通过峰值散射型近场光学显微镜三维近场分析

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摘要

Scattering-type scanning near-field optical microscopy (s-SNOM) is instrumental in exploring polaritonic behaviors of two-dimensional (2D) materials at the nanoscale. A sharp s-SNOM tip couples momenta into 2D materials through phase matching to excite phonon polaritons, which manifest as nanoscale interference fringes in raster images. However, s-SNOM lacks the ability to detect the progression of near-field properties along the perpendicular axis to the surface. Here, we perform near-field analysis of a micro-disk and a reflective edge made of isotopically pure hexagonal boron nitride (h-(BN)-B-11), by using three-dimensional near-field response cubes obtained by peak force scattering-type near-field optical microscopy (PF-SNOM). Momentum quantization of polaritons from the confinement of the circular structure is revealed in situ. Moreover, tip-sample distance is found to be capable of fine-tuning the momentum of polaritons and modifying the superposition of quantized polaritonic modes. The PF-SNOM-based three-dimensional near-field analysis provides detailed characterization capability with a high spatial resolution to fully map three-dimensional near-fields of nano-photonics and polaritonic structures.
机译:散射型扫描近场光学显微镜(S-SNOM)是探索纳米级探索二维(2D)材料的偏光性行为的工具。夏普S-SNOM尖端通过相位匹配到Eccite Phonon Polaritons的相位匹配,这表明作为光栅图像中的纳米级干扰条纹。然而,S-SNOM缺乏检测沿着垂直轴线到表面的近场性质进展的能力。在这里,我们通过使用通过峰值力获得的三维近场响应立方体,对微盘和由同位素纯六方氮化硼(H-(Bn)-B-11)制成的反射边缘进行近场分析散射型近场光学显微镜(PF-SNOM)。原位揭示了圆形结构的限制的极性膜的动量量化。此外,发现尖端样品距离能够精细调整极性子的动量并改变量化的偏热模式的叠加。基于PF-SNOM的三维近场分析提供了具有高空间分辨率的详细表征能力,以全面地绘制纳米光子和偏光性结构的三维近场。

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