English

Spin-to-orbital angular momentum conversion in dielectric metasurfaces

Optics 2017-03-08 v1

Abstract

Spin-to-orbital-angular-momentum conversion has attracted considerable interest as a tool to create exotic light beams, leading to the emergence of novel devices that implement this function. These converters exploit the geometrical phase to create helical beams of handedness determined by the chirality of the incident light. This property is finding important applications in quantum optics thanks to the demonstration of liquid crystal spin-to-orbital angular momentum converters (SOC) known as q-plates. Here we demonstrate high-efficiency SOCs in the visible based on dielectric metasurfaces that generate vortex beams with high and even fractional topological charge and show for the first time the simultaneous generation of collinear helical beams with different and arbitrary orbital angular momentum. We foresee that this versatile method of creating vortex beams, which circumvents the limitations of q-plates, will significant impact microscopy and vector beam shaping.

Keywords

Cite

@article{arxiv.1605.03899,
  title  = {Spin-to-orbital angular momentum conversion in dielectric metasurfaces},
  author = {Robert Charles Devlin and Antonio Ambrosio and Daniel Wintz and Stefano Luigi Oscurato and Alexander Yutong Zhu and Mohammadreza Khorasaninejad and Jaewon Oh and Pasqualino Maddalena and Federico Capasso},
  journal= {arXiv preprint arXiv:1605.03899},
  year   = {2017}
}
R2 v1 2026-06-22T13:59:34.573Z