Grenapin Florence, D'Errico Alessio, Karimi Ebrahim
Nexus for Quantum Technologies, University of Ottawa, K1N 5N6, ON, Ottawa, Canada.
National Research Council of Canada, Ottawa, Canada.
Nanophotonics. 2023 Jan 16;12(14):2789-2795. doi: 10.1515/nanoph-2022-0502. eCollection 2023 Jul.
Some anisotropic materials form semicrystalline structures, called spherulites, when observed in a polarisation microscope, exhibit a characteristic "maltese-cross"-like pattern. While this observation has been hitherto considered as a tool to characterize these materials, we show that these patterns are associated with a strong light's spin-orbit coupling induced by the spherulite structures. We experimentally demonstrate these effects using samples of crystallized ascorbic acid and observing the creation of optical vortices in transmitted laser beams, as well as the formation of inhomogeneous polarisation patterns. Our findings suggest the use of some spherulites based on other materials in frequency ranges, e.g. in the THz domain, where polarisation and spatial shaping of electromagnetic radiation is still a challenging task.
一些各向异性材料在偏光显微镜下观察时会形成称为球晶的半结晶结构,呈现出特征性的“马耳他十字”样图案。虽然这一观察结果迄今一直被视为表征这些材料的一种工具,但我们表明这些图案与球晶结构诱导的强光自旋 - 轨道耦合有关。我们使用结晶抗坏血酸样品进行实验演示了这些效应,观察到透射激光束中光学涡旋的产生以及非均匀偏振图案的形成。我们的研究结果表明,可以在例如太赫兹领域等频率范围内使用基于其他材料的一些球晶,在这些领域中电磁辐射的偏振和空间整形仍然是一项具有挑战性的任务。