论文标题
一般电磁散射理论中的螺旋性与光损耗之间的相关性
Correlations between helicity and optical losses within general electromagnetic scattering theory
论文作者
论文摘要
最近已提出保留纳米结构和元时间的螺旋性,以增强手性质的光谱特征。考虑到这一点,我们强调说,组成材料的损失极大地影响了构建保存螺旋性的结构的可能性。我们首先提出了一个通用程序,该程序允许评估标准化的螺旋性期望值,$ \ langle \hatλ\ rangle $,即允许识别螺旋性保留散射器的可观察到的可观察到的。然后,我们将此过程应用于手性球体,在方向平均图像可以捕获手性无机纳米结构的光学响应,从而获得了$ \ langle \hatλ\ rangle $的广泛适用的分析表达。最后,我们从数值上表明,光损失对非磁性核心壳和手性球的螺旋性期望值施加了上限。
Helicity preserving nanostructures and metasurfaces have been recently proposed as suitable candidates to enhance spectroscopic features of chiral matter. With this in mind, we highlight that losses in the constituent nonmagnetic materials dramatically affect the possibility of constructing structures which conserve helicity. We first present a general procedure that permits the evaluation of the normalized helicity expectation value, $\langle\hatΛ\rangle$, i.e. the observable that permits the identification of helicity preserving scatterers. We then apply this procedure to the case of a chiral sphere, which in an orientation averaged picture can capture the optical response of chiral inorganic nanostructures, obtaining a widely applicable analytical expression of $\langle\hatΛ\rangle$ for this type of objects. Finally, we numerically show that optical losses impose an upper bound to the helicity expectation value on nonmagnetic core-shells and chiral spheres.