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Raman scattering governed by dark resonant modes in silicon nanoparticles

机译:硅纳米粒子中暗共振模式控制拉曼散射

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Analyzing the modal content of resonant nanostructures using optical methods often becomes a sophisticated problem because of hidden dark resonances, which are uncoupled with far-field modes. The common methods of dark modes spectroscopy base on electron beam systems, such as cathodo-luminescence and, thus, are not very convenient in use. We suggest utilizing Raman spectroscopy to reveal the full modal structure of nanoresonators. The suggested approach is tested on silicon nanoparticles placed on top of gold substrate. It allows detecting magnetic quadrupole modes, which are hard to observe with common dark-field spectroscopy. The experimental results are verified with numerical simulations.
机译:使用光学方法分析共振纳米结构的模态含量通常会成为一个复杂的问题,因为隐藏的暗共振与远场模式不相关。暗模式光谱的常见方法基于电子束系统,例如阴极发光,因此使用起来不太方便。我们建议利用拉曼光谱法揭示纳米谐振器的完整模态结构。建议的方法在放置在金基底顶部的硅纳米颗粒上进行了测试。它可以检测四极磁模式,这在普通的暗场光谱学中很难观察到。实验结果通过数值模拟验证。

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