Spin-Orbit Angular Momentum Conversion in Metamaterials and Metasurfaces
arXiv:1904.02647 · doi:10.3390/quantum1010010
Abstract
In the last decades unprecedented progress in the manipulation of spin angular momentum (SAM) and orbital angular momentum (OAM) of light has been achieved, enabling a number of applications ranging from classical and quantum communication, to optical microscopy and super-resolution imaging. Metasurfaces are artificially engineered 2D metamaterials with designed subwavelength-size building blocks, which allow precise control of optical fields with unparalleled flexibility and performance. The reduced dimensionality of optical metasurfaces enables new physics and leads to functionalities and applications that are remarkably different from those achievable with bulk materials. In this review, we present an overview of the progress in optical metasurfaces for manipultation of SAM and OAM of light, for applications in integrated spin-orbit conversion (SOC) devices.
17 pages, 5 figures, Invited contribution
References in corpus (6)
- Conservation of the spin and orbital angular momenta in electromagnetism
- Sharing a common origin between the rotational and linear Doppler effects
- Tunable Plasmonic Toroidal Terahertz Metamodulator
- Orbital Angular Momentum Generation and Detection by Geometric-Phase Based Metasurfaces
- Weak measurements with orbital angular momentum pointer states
- Photonic Discrete-time Quantum Walks and Applications