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An engineered CARS substrate with giant field enhancement in crisscross dimer nanostructure

机译:一种工程化的CARS衬底在交叉二聚体纳米结构中具有巨大的场增强能力

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摘要

We theoretically investigate the optical properties of a nanostructure consisting of the two identical and symmetrically arranged crisscrosses. A plasmonic Fano resonance is induced by a strong interplay between bright mode and dark modes, where the bright mode is due to electric dipole resonance while dark modes originate from the magnetic dipole induced by LC resonances. In this article, we find that the electric field “hotspots” corresponding to three different wavelengths can be positioned at the same spatial position, and its spectral tunability is achieved by changing geometric parameters. The crisscrosses system can be designed as a plasmonic substrate for enhancing Coherent Anti-Stokes Raman Scattering (CARS) signal. This discovery provides a new method to achieve single molecule detection. At the same time, it also has many important applications for multi-photon imaging and other nonlinear optical processes, such as four-wave mixing and stimulated Raman scattering.
机译:我们从理论上研究了由两个相同且对称排列的交叉组成的纳米结构的光学特性。等离子Fano共振是由亮模和暗模之间的强相互作用引起的,其中亮模归因于电偶极子共振,而暗模则源自LC共振引起的磁偶极子。在本文中,我们发现可以将与三种不同波长对应的电场“热点”定位在同一空间位置,并且通过更改几何参数来实现其光谱可调性。十字交叉系统可以设计成等离子体衬底,用于增强相干反斯托克斯拉曼散射(CARS)信号。该发现提供了一种实现单分子检测的新方法。同时,它在多光子成像和其他非线性光学过程中也具有许多重要的应用,例如四波混合和受激拉曼散射。

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