Spin-to-orbital conversion of the angular momentum of light and its classical and quantum applications

Преобразование спинового углового момента света в орбитальный и его классические и квантовые применения
Lorenzo Marrucci, Ebrahim Karimi, Sergei Slussarenko, Bruno Piccirillo, Enrico Santamato, Eleonora Nagali, Fabio Sciarrino
2011-04-27

orbital angular momentum of lightpolarization control of OAMq-platesquantum photonic applicationsspin-to-orbital angular momentum conversion
A few years ago the possibility of coupling and inter-converting the spin and orbital angular momentum (SAM and OAM) of paraxial light beams in inhomogeneous anisotropic media was demonstrated. An important case is provided by waveplates having a singular transverse pattern of the birefringent optical axis, with a topological singularity of charge q at the plate center, hence named ' q -plates'. The introduction of q -plates has given rise in recent years to a number of new results and to significant progress in the field of orbital angular momentum of light. Particularly promising are the quantum photonic applications, because the polarization control of OAM allows the transfer of quantum information from the SAM qubit space to an OAM subspace of a photon and vice versa. In this paper, we review the development of the q -plate idea and some of the most significant results that have originated from it, and we will briefly touch on many other related findings concerning the interaction of the SAM and OAM of light.
1
A q-plate is a waveplate with a singular transverse birefringent-axis pattern whose central topological singularity has charge q.
2
Polarization control of orbital angular momentum enables transfer of quantum information between a photon's spin-based polarization qubit and an orbital-angular-momentum subspace.
3
Q-plates enable coupling and interconversion between the spin angular momentum and orbital angular momentum of paraxial light in inhomogeneous anisotropic media.
4
Q-plates have driven significant advances in research on the orbital angular momentum of light.
5
The paper reviews q-plate development and applications, including classical and quantum photonic results involving spin–orbit interactions.

Paraxial light beams interacting with q-plates in inhomogeneous anisotropic media

Spin-to-orbital and orbital-to-spin angular-momentum conversion, including its classical and quantum photonic applications

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2011-04-27
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Lorenzo Marrucci
Ebrahim Karimi
Sergei Slussarenko
Bruno Piccirillo
Enrico Santamato
Eleonora Nagali
Fabio Sciarrino
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