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Correlated 3D Nanoscale Mapping and Simulation ofCoupled Plasmonic Nanoparticles

机译:相关的3D纳米级制图和仿真耦合等离子体纳米颗粒

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摘要

Electron tomography in combination with electron energy-loss spectroscopy (EELS) experiments and simulations was used to unravel the interplay between structure and plasmonic properties of a silver nanocuboid dimer. The precise 3D geometry of the particles fabricated by means of electron beam lithography was reconstructed through electron tomography, and the full three-dimensional information was used as an input for simulations of energy-loss spectra and plasmon resonance maps. Excellent agreement between experiment and theory was found throughout, bringing the comparison between EELS imaging and simulations to a quantitative and correlative level. In addition, interface mode patterns, normally masked by the projection nature of a transmission microscopy investigation, could be unambiguously identified through tomographic reconstruction. This work overcomes the need for geometrical assumptions or symmetry restrictions of the sample in simulations and paves the way for detailed investigations of realistic and complex plasmonic nanostructures.
机译:电子断层扫描与电子能量损失谱(EELS)实验和模拟相结合,用于揭示银纳米立方二聚体的结构与等离子体性能之间的相互作用。通过电子断层摄影术重建了通过电子束光刻法制造的粒子的精确3D几何形状,并将完整的三维信息用作模拟能量损失谱和等离振子共振图的输入。整个实验与理论之间达成了极好的一致性,从而使EELS成像和模拟之间的比较达到了定量和相关的水平。另外,通过层析成像重建可以明确地识别通常被透射显微镜研究的投影性质所掩盖的界面模式。这项工作克服了在模拟中对样品的几何假设或对称性限制的需求,并为现实和复杂的等离激元纳米结构的详细研究铺平了道路。

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