Devlin Robert Charles, Ambrosio Antonio, Wintz Daniel, Oscurato Stefano Luigi, Zhu Alexander Yutong, Khorasaninejad Mohammadreza, Oh Jaewon, Maddalena Pasqualino, Capasso Federico
Opt Express. 2017 Jan 9;25(1):377-393. doi: 10.1364/OE.25.000377.
Vortex beams are characterized by a helical wavefront and a phase singularity point on the propagation axis that results in a doughnut-like intensity profile. These beams carry orbital angular momentum proportional to the number of intertwined helices constituting the wavefront. Vortex beams have many applications in optics, such as optical trapping, quantum optics and microscopy. Although beams with such characteristics can be generated holographically, spin-to-orbital angular momentum conversion has attracted considerable interest as a tool to create vortex beams. In this process, the geometrical phase is exploited to create helical beams whose handedness is determined by the circular polarization (left/right) of the incident light, that is by its spin. Here we demonstrate high-efficiency Spin-to-Orbital angular momentum-Converters (SOCs) at visible wavelengths based on dielectric metasurfaces. With these SOCs we generate vortex beams with high and fractional topological charge and show for the first time the simultaneous generation of collinear helical beams with different and arbitrary orbital angular momentum. This versatile method of creating vortex beams, which circumvents the limitations of liquid crystal SOCs and adds new functionalities, should significantly expand the applications of these beams.
涡旋光束的特征在于其螺旋波前以及传播轴上的相位奇点,这导致了类似甜甜圈的强度分布。这些光束携带的轨道角动量与构成波前的交织螺旋数量成正比。涡旋光束在光学领域有许多应用,如光镊、量子光学和显微镜技术。尽管具有此类特性的光束可通过全息术产生,但自旋 - 轨道角动量转换作为一种产生涡旋光束的工具已引起了相当大的关注。在这个过程中,利用几何相位来产生螺旋光束,其旋向由入射光的圆偏振(左旋/右旋)即其自旋决定。在此,我们展示了基于介电超表面的可见光波长下的高效自旋 - 轨道角动量转换器(SOC)。利用这些SOC,我们生成了具有高和分数拓扑电荷的涡旋光束,并首次展示了同时生成具有不同且任意轨道角动量的共线螺旋光束。这种创建涡旋光束的通用方法规避了液晶SOC的局限性并增加了新功能,应能显著扩展这些光束的应用。