论文标题
携带光束的自旋/动量特性
Spin/momentum properties of the paraxial optical beams
论文作者
论文摘要
自旋角动量是经典电磁场的基本动力学特性,在旋转轨道和光象征相互作用中起着重要作用,尤其是在近场光学元件中。对光学旋转的研究导致发现了现象,例如光旋转摩托锁和光子拓扑准粒子,以及在高精度检测和纳米测量学方面的应用。在这里,我们研究了副旋转光学系统中的自旋摩肌关系,并表明光学旋转角动量同时包含横向和纵向旋转成分。横向旋转起源于场的不均匀性,受动量密度的涡度,而平行于局部规范动量的纵向自旋与光的极化椭圆形成正比。此外,可以观察到在副束中观察到的光敏旋纹理是由光学横向旋转产生的,并且它们的拓扑是在传播过程中不受花倍相的影响而保持其拓扑。有趣的是,包括相位和极化奇点在内的光学奇异性也可以显着影响自旋摩肌的性质。我们的发现描述了甲状数光学系统中的内在自旋摩托明特性,并应用于光聚焦,成像和散射系统中自旋摩托明的性质分析。
Spin angular momentum, an elementary dynamical property of classical electromagnetic fields, plays an important role in spin-orbit and light-matter interactions, especially in near-field optics. The research on optical spins has led to the discovery of phenomena such as optical spin-momentum locking and photonic topological quasiparticles, as well as applications in high-precision detection and nanometrology. Here, we investigate spin-momentum relations in paraxial optical systems and show that the optical spin angular momentum contains transverse and longitudinal spin components simultaneously. The transverse spin originates from inhomogeneities of field and governed by the vorticity of the kinetic momentum density, whereas the longitudinal spin parallel to the local canonical momentum is proportional to the polarization ellipticity of light. Moreover, the skyrmionlike spin textures arise from the optical transverse spin can be observed in paraxial beams, and their topologies are maintained free from the influence of the Gouy phase during propagation. Interestingly, the optical singularities, including both phase and polarization singularities, can also affect the spin-momentum properties significantly. Our findings describe the intrinsic spin-momentum properties in paraxial optical systems and apply in the analysis of the properties of spin-momentum in optical focusing, imaging, and scattering systems.