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首页> 外文期刊>Plasmonics >Electron Energy Loss and One- and Two-Photon Excited SERS Probing of 'Hot' Plasmonic Silver Nanoaggregates
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Electron Energy Loss and One- and Two-Photon Excited SERS Probing of 'Hot' Plasmonic Silver Nanoaggregates

机译:电子能量损失以及“热”等离激元银纳米聚集体的单光子激发和双光子激发SERS探测

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We report electron energy loss spectroscopy (EELS) and one- and two-photon excited surface-enhanced Raman scattering (SERS) and hyper Raman studies on plasmonic silver nanoaggregates. By comparison with computations, EELS imaging reveals an inverse relationship between local field intensity in an optical experiment and electron energy loss intensity at energies corresponding to excitation wavelengths used for optical probing. This inverse relation exists independent on specific nanoaggregate geometries and is mainly controlled by the gap size between the particles forming the aggregate. The ratio between twoand one-photon excited SERS measured at different excitation wavelengths provides information about local fields in the hottest spots and their dependence on the photon energy. Our data verify experimentally the predicted increase of local optical fields in the hot spots with increasing wave lengths. The reported findings show new experimental ways to characterize local fields of plasmonic nanostructures. This is of particular importance for complex structures which are not easily approachable by computations.
机译:我们报告电子能量损失谱(EELS)和单光子和银纳米聚集体的单光子和双光子激发的表面增强拉曼散射(SERS)和超拉曼研究。通过与计算的比较,EELS成像揭示了光学实验中的局部场强与对应于用于光学探测的激发波长的能量下的电子能量损失强度之间的反比关系。该逆关系独立于特定的纳米聚集体几何形状而存在,并且主要由形成聚集体的颗粒之间的间隙尺寸控制。在不同激发波长下测得的两个和一个光子激发的SERS之间的比率提供了有关最热斑点中的局部场及其对光子能量的依赖性的信息。我们的数据通过实验验证了随着波长增加,热点中局部光场的预测增加。报告的发现显示了表征等离子体纳米结构局部场的新实验方法。这对于不易通过计算接近的复杂结构尤为重要。

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