论文标题

轨道角动量和一般近距离束场的自旋偏振成分的几何相特征

Orbital Angular Momenta and Geometric Phase Characteristics of Spin-polarized Components of a General Paraxial Beam-field

论文作者

Debnath, Anirban, Viswanathan, Nirmal K.

论文摘要

我们通过数学上表征旋转的角度动量(OAM)通量密度,通过Barnett的通量确定形式上来探索一般副束场中自旋轨道相互作用(SOI)的微妙而基本的性质。我们通过考虑布鲁斯特反射近去束的特殊情况来展示形式主义的应用,为此,我们探讨了特定的细节,例如非经典涡流相结构和对场功能的单光子解释。自旋组分场的阶段被解释为几何阶段。我们通过将空间相信息转移到极化域来设计一种直接测量这些相的实验方法,从而证明了经典的模拟von Neumann测量。我们对SOI的完整数学表征及其与直接测量几何相的相关性可以在探索其他通用光学系统中探索OAM和几何相特征的未来方法中找到潜在的应用。

We explore a subtle and fundamental nature of spin-orbit interaction (SOI) in a general paraxial beam-field by mathematically characterizing the orbital angular momentum (OAM) flux densities of the spin-polarized component fields via Barnett's flux determination formalism. We show the application of our formalism by considering the special case of a Brewster-reflected paraxial beam, for which we explore specific details such as non-canonical vortex phase structures and single-photon interpretation of the field function. The phases of the spin-component fields are interpreted as geometric phases; and we devise an experimental method of direct measurement of these phases by transferring the spatial phase information to the polarization domain -- thus demonstrating a classical analog von Neumann measurement. Our complete mathematical characterization of SOI and its relevance to the direct measurement of geometric phase can find potential application in future methods exploring OAM and geometric phase characteristics in other general optical systems.

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