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Robust numerical evaluation of circular dichroism from chiral mediumanostructure coupled systems using the finite-element method

机译:采用有限元法从手性介质/纳米结构耦合系统的圆形二色性循环分数的鲁棒数值评价

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摘要

It has been demonstrated that circular dichroism (CD) signals from chiral molecules can be boosted by plasmonic nanostructures inducing strong local electromagnetic fields. To optimize nanostructures to improve CD enhancement, numerical simulations such as the finite element method (FEM) have been widely adopted. However, FEM calculations for CD have been frequently hampered by unwanted numerical artifacts due to improperly discretizing problem spaces. Here, we introduce a new meshing rule for FEM that provides CD simulations with superior numerical accuracy. We show that unwanted numerical artifacts can be suppressed by implementing the mirror-symmetric mesh configuration that generates identical numerical artifacts in the two-opposite circularly polarized waves, which cancel each other out in the final CD result. By applying our meshing scheme, we demonstrate a nanostructure/chiral molecule coupled system from which the CD signal is significantly enhanced. Since our meshing scheme addresses the previously unresolved issue of discriminating between very small CD signals and numerical errors, it can be directly applied to numerical simulations featuring natural chiral molecules which have intrinsically weak chiroptical responses.
机译:已经证明,通过诱导强局部电磁场的等离子体纳米结构,可以促进来自手性分子的圆形二色性(CD)信号。为了优化纳米结构以改善CD增强,已广泛采用数值模拟,例如有限元方法(FEM)。然而,由于问题空间不正当地,由不需要的数值伪影经常受到CD的有限元计算。在这里,我们介绍了一个新的FEM网格规则,提供了具有卓越数值准确度的CD仿真。我们示出了通过实现在两个相对的圆偏振波中产生相同的数值伪像的镜对称网格配置,可以抑制不需要的数值伪像,其在最终CD结果中互相消除。通过应用我们的啮合方案,我们证明了一种纳米结构/手性分子耦合系统,从中显着提高CD信号。由于我们的网格化方案解决了以前未解决的问题辨别非常小的CD信号和数值误差问题,因此它可以直接应用于具有本质上弱的阴道反应的天然手性分子的数值模拟。

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