论文标题

自由电子束中的光学极化类似物

Optical polarization analogue in free electrons beams

论文作者

Lourenço-Martins, Hugo, Gérard, Davy, Kociak, Mathieu

论文摘要

快速电子光谱镜可以用无与伦比的空间分辨率进行定量测量激发的光学响应。但是,由于其固有的标量性质,电子波无法访问与极化相关的数量。尽管基于源自单数光学的概念的转换(例如涡旋束)的概念的转换有希望的尝试,但快速电子的光学极化类似物的定义仍然是一封死字母。在这里,我们建立了一个类似物,例如两个精心挑选的奇异波状态之间电子的偶极转变载体。我们表明,电子能量光谱(EEL)允许直接测量\ textIt {极化}态的电磁局部密度。特别是,在圆极化的情况下,它直接测量了局部光学自旋密度。这项工作将鳗鱼作为一种定量技术,可以解决纳米透明质学的基本问题,例如超级手掌,黑暗激发的局部极化或纳米级的偏振奇异性。

Fast electrons spectromicroscopies enable to measure quantitatively the optical response of excitations with unrivaled spatial resolution. However, due to their inherently scalar nature, electron waves cannot access to polarization-related quantities. In spite of promising attempts based on the conversion of concepts originating from singular optics (such as vortex beams), the definition of an optical polarization analogue for fast electrons has remained a dead letter. Here, we establish such an analogue as the dipole transition vector of the electron between two well-chosen singular wave states. We show that electron energy-loss spectroscopy (EELS) allows a direct measurement of the \textit{polarized} electromagnetic local density of states. In particular, in the case of circular polarization, it measures directly the local optical spin density. This work establishes EELS as a quantitative technique to tackle fundamental issues in nano-optics, such as super-chirality, the local polarization of dark excitations or polarization singularities at the nanoscale.

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