Structured optical materials provide a promising platform for photonic quantum information processing in free space. Beam splitters, a fundamental building block of photonic circuits, have recently been demonstrated in free space using geometric-phase optical elements. These devices coherently mix circularly polarized transverse modes of freely propagating optical fields, including modes carrying orbital angular momentum. In this work, we investigate liquid-crystal metagratings as electrically tunable beam splitters for transverse-momentum optical modes. By exploiting the voltage-controlled birefringence of liquid-crystal metasurfaces, we experimentally tune the splitting ratio of the device and thereby control the degree of two-photon interference between indistinguishable photons. At the output, photons are spatially resolved in different regions of a time-resolved single-photon-sensitive detector, enabling the reconstruction of coincidence maps in the Fourier plane. This approach is readily scalable and enables highly parallel coincidence measurements across a large number of optical modes.

Tunable quantum interference in free space with a liquid-crystal metagrating / Ammendola, M.G., Flores, I.M., Dey, S., Colandrea, F.D., Nomerotski, A., Sephton, B., Schiano, C., De Lisio, C., D'Ambrosio, V., Marrucci, L., Cameron, P., Cardano, F.. - In: OPTICA QUANTUM. - ISSN 2837-6714. - 4:4(2026), pp. 374-381. [10.1364/opticaq.597375]

Tunable quantum interference in free space with a liquid-crystal metagrating

Ammendola, Maria Gorizia;Flores, Italo Machuca;Dey, Sneha;Colandrea, Francesco Di;Sephton, Bereneice;Schiano, Carlo;de Lisio, Corrado;D'Ambrosio, Vincenzo;Marrucci, Lorenzo;Cameron, Patrick;Cardano, Filippo
2026

Abstract

Structured optical materials provide a promising platform for photonic quantum information processing in free space. Beam splitters, a fundamental building block of photonic circuits, have recently been demonstrated in free space using geometric-phase optical elements. These devices coherently mix circularly polarized transverse modes of freely propagating optical fields, including modes carrying orbital angular momentum. In this work, we investigate liquid-crystal metagratings as electrically tunable beam splitters for transverse-momentum optical modes. By exploiting the voltage-controlled birefringence of liquid-crystal metasurfaces, we experimentally tune the splitting ratio of the device and thereby control the degree of two-photon interference between indistinguishable photons. At the output, photons are spatially resolved in different regions of a time-resolved single-photon-sensitive detector, enabling the reconstruction of coincidence maps in the Fourier plane. This approach is readily scalable and enables highly parallel coincidence measurements across a large number of optical modes.
2026
Tunable quantum interference in free space with a liquid-crystal metagrating / Ammendola, M.G., Flores, I.M., Dey, S., Colandrea, F.D., Nomerotski, A., Sephton, B., Schiano, C., De Lisio, C., D'Ambrosio, V., Marrucci, L., Cameron, P., Cardano, F.. - In: OPTICA QUANTUM. - ISSN 2837-6714. - 4:4(2026), pp. 374-381. [10.1364/opticaq.597375]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/1066095
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