de Oliveira Michael, Piccardo Marco, Eslami Sahand, Aglieri Vincenzo, Toma Andrea, Ambrosio Antonio
Center for Nano Science and Technology, Fondazione Istituto Italiano di Tecnologia, 20133 Milan, Italy.
Physics Department, Politecnico di Milano, 20133 Milan, Italy.
ACS Photonics. 2023 Jan 4;10(1):290-297. doi: 10.1021/acsphotonics.2c01697. eCollection 2023 Jan 18.
To exploit the full potential of the transverse spatial structure of light using the Laguerre-Gaussian basis, it is necessary to control the azimuthal and radial components of the photons. Vortex phase elements are commonly used to generate these modes of light, offering precise control over the azimuthal index but neglecting the radially dependent amplitude term, which defines their associated corresponding transverse profile. Here, we experimentally demonstrate the generation of high-purity Laguerre-Gaussian beams with a single-step on-axis transformation implemented with a dielectric phase-amplitude metasurface. By vectorially structuring the input beam and projecting it onto an orthogonal polarization basis, we can sculpt any vortex beam in phase and amplitude. We characterize the azimuthal and radial purities of the generated vortex beams, reaching a purity of 98% for a vortex beam with =50 and = 0. Furthermore, we comparatively show that the purity of the generated vortex beams outperforms those generated with other well-established phase-only metasurface approaches. In addition, we highlight the formation of "ghost" orbital angular momentum orders from azimuthal gratings (analogous to ghost orders in ruled gratings), which have not been widely studied to date. Our work brings higher-order vortex beams and their unlimited potential within reach of wide adoption.
为了利用拉盖尔 - 高斯基来充分发挥光的横向空间结构的潜力,有必要控制光子的方位角和径向分量。涡旋相位元件通常用于产生这些光模式,它能精确控制方位角指数,但忽略了与径向相关的振幅项,而该项定义了其相关的相应横向分布。在此,我们通过使用介电相位 - 振幅超表面实现的单步轴上变换,实验证明了高纯度拉盖尔 - 高斯光束的产生。通过对输入光束进行矢量结构化并将其投影到正交偏振基上,我们可以在相位和振幅上塑造任何涡旋光束。我们对所产生的涡旋光束的方位角和径向纯度进行了表征,对于具有 = 50和 = 0的涡旋光束,纯度达到了98%。此外,我们通过比较表明,所产生的涡旋光束的纯度优于使用其他成熟的仅相位超表面方法所产生的光束。另外,我们突出了由方位角光栅形成的“鬼”轨道角动量阶数(类似于刻划光栅中的鬼阶数),这在迄今为止尚未得到广泛研究。我们的工作使高阶涡旋光束及其无限潜力能够被广泛应用。