论文标题
径向和方位角的纯涡流束来自相位振幅跨度
Radially and azimuthally pure vortex beams from phase-amplitude metasurfaces
论文作者
论文摘要
为了利用Laguerre-Gaussian的基础利用光的横向空间结构的全部电势,有必要控制光子的方位角和径向成分。涡流相元素通常用于生成这些光模式,提供对方位角索引的精确控制,但忽略了径向依赖的振幅项,该项定义了其相关的相应横向轮廓。在这里,我们通过实验证明了高纯度laguerre-gaussian梁的产生,并用介电相位振幅跨表面实现了单步上的轴上变换。通过将输入光束构造并将其投影到正交极化基础上,我们可以在相位和振幅中雕刻任何涡流梁。我们表征了生成的涡流梁的方位角和径向纯度,涡旋束的纯度为98%,$ \ ell = 50 $和$ p = 0 $。此外,我们相对表明,生成的涡流梁的纯度优于使用其他仅相位纯粹的跨表面方法生成的纯度。此外,我们强调了“幽灵”轨道角动量从方位角(类似于统治光栅中的幽灵订单类似)的形成,这些命令迄今尚未被广泛研究。我们的工作带来了高阶涡流束及其无限潜力,可以在广泛采用的范围内。
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 neglect 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 polarisation basis, we can sculpt any vortex beam in phase and amplitude. We characterize the azimuthal and radial purity of the generated vortex beams, reaching a purity of 98% for a vortex beam with $\ell=50$ and $p=0$. Furthermore, we comparatively show that the purity of the generated vortex beams outperform 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.