论文标题

纳米级相对相位映射揭示的球体的手性光发射

Chiral Light Emission from a Sphere Revealed by Nanoscale Relative Phase Mapping

论文作者

Matsukata, Taeko, de Abajo, F. Javier Garcia, Sannomiya, Takumi

论文摘要

循环偏振光(CPL)目前正在接受大量关注,作为下一代信息技术(例如量子通信和加密)的关键要素。对于此类应用,CPL光子的产生通常是通过将Achiral光学量子发射器耦合到手性纳米annoantennas来实现的。在这里,我们探索了一种不同的策略,该策略包括令人兴奋的纳米球(最终的对称结构),以产生全向CPL发射。具体而言,我们证明了基于两种不同策略的电子束诱导的硅纳米球的手性发射:溶解正交偶极模式的退化,以及电气和磁模式的干扰。我们通过使用新开发的极化四维阴性发光方法来可视化相位和极化来证明这些概念。除了它们的基本兴趣外,我们的结果还支持从球形对称系统中使用自由电子诱导的光发射,作为一种多功能平台,用于生成手性光,并按需控制阶段和极化程度。

Circularly polarized light (CPL) is currently receiving much attention as a key ingredient for next-generation information technologies, such as quantum communication and encryption. CPL photon generation for such applications is commonly realized by coupling achiral optical quantum emitters to chiral nanoantennas. Here, we explore a different strategy consisting in exciting a nanosphere -- the ultimate symmetric structure -- to produce all-directional CPL emission. Specifically, we demonstrate chiral emission from a silicon nanosphere induced by an electron beam based on two different strategies: dissolving the degeneracy of orthogonal dipole modes, and interference of electric and magnetic modes. We prove these concepts by visualizing the phase and polarization using a newly developed polarimetric four-dimensional cathodoluminescence method. Besides their fundamental interest, our results support the use of free-electron-induced light emission from spherically symmetric systems as a versatile platform for the generation of chiral light with on-demand control over the phase and degree of polarization.

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