Photon spin-to-orbital angular momentum conversion via an electrically tunable q-plate

Abstract

Exploiting electro-optic effects in liquid crystals, we achieved real-time control of the retardation of liquid- crystal-based q-plates through an externally applied voltage. The newly conceived electro-optic q-plates can be operated as electrically driven converters of photon spin into orbital angular momentum, enabling a variation of the orbital angular momentum probabilities of the output photons over a time scale of milliseconds.

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