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Formation of Enhanced Uniform Chiral Fields in Symmetric Dimer Nanostructures

机译:对称二聚体纳米结构中增强均匀手性场的形成

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摘要

Chiral fields with large optical chirality are very important in chiral molecules analysis, sensing and other measurements. Plasmonic nanostructures have been proposed to realize such super chiral fields for enhancing weak chiral signals. However, most of them cannot provide uniform chiral near-fields close to the structures, which makes these nanostructures not so efficient for applications. Plasmonic helical nanostructures and blocked squares have been proved to provide uniform chiral near-fields, but structure fabrication is a challenge. In this paper, we show that very simple plasmonic dimer structures can provide uniform chiral fields in the gaps with large enhancement of both near electric fields and chiral fields under linearly polarized light illumination with polarization off the dimer axis at dipole resonance. An analytical dipole model is utilized to explain this behavior theoretically. 30 times of volume averaged chiral field enhancement is gotten in the whole gap. Chiral fields with opposite handedness can be obtained simply by changing the polarization to the other side of the dimer axis. It is especially useful in Raman optical activity measurement and chiral sensing of small quantity of chiral molecule.
机译:具有大的光学手性的手性场在手性分子分析,传感和其他测量中非常重要。已经提出了等离子纳米结构来实现这种超级手性场,以增强弱手性信号。然而,它们中的大多数不能在结构附近提供均匀的手性近场,这使得这些纳米结构对于应用不是那么有效。等离子螺旋纳米结构和正方形被证明可以提供均匀的手性近场,但是结构制造是一个挑战。在本文中,我们显示了非常简单的等离激元二聚体结构可以在间隙中提供均匀的手性场,并且在线性偏振光照明下在偶极共振时偏离二聚体轴的偏振下,可以大大增强近电场和手性场。解析偶极子模型可用于从理论上解释这种行为。在整个间隙中获得了30倍的体积平均手性场增强。只需将偏振方向更改为二聚体轴的另一侧,即可获得具有相反旋性的手性场。在拉曼光学活性测量和少量手性分子的手性传感中特别有用。

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