In this work, we experimentally show that quantum entanglement can be symmetry protected in the interaction with a single subwavelength plasmonic nanoaperture, with a total volume of V ∼ 0.2λ^3. In particular, we experimentally demonstrate that two-photon entanglement can be either completely preserved or completely lost after the interaction with the nanoaperture, solely depending on the relative phase between the quantum states. We achieve this effect by using specially engineered two-photon states to match the properties of the nanoaperture. In this way we can access a symmetry protected state, i.e., a state constrained by the geometry of the interaction to retain its entanglement. In spite of the small volume of interaction, we show that the symmetry protected entangled state retains its main properties. This connection between nanophotonics and quantum optics probes the fundamental limits of the phenomenon of quantum interference.

Symmetry Protection of Photonic Entanglement in the Interaction with a Single Nanoaperture / Büse, Alexander; Juan, Mathieu L.; Tischler, Nora; D'Ambrosio, Vincenzo; Sciarrino, Fabio; Marrucci, Lorenzo; Molina-Terriza, Gabriel. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 121:17(2018). [10.1103/PhysRevLett.121.173901]

Symmetry Protection of Photonic Entanglement in the Interaction with a Single Nanoaperture

Vincenzo D’Ambrosio;Lorenzo Marrucci;
2018

Abstract

In this work, we experimentally show that quantum entanglement can be symmetry protected in the interaction with a single subwavelength plasmonic nanoaperture, with a total volume of V ∼ 0.2λ^3. In particular, we experimentally demonstrate that two-photon entanglement can be either completely preserved or completely lost after the interaction with the nanoaperture, solely depending on the relative phase between the quantum states. We achieve this effect by using specially engineered two-photon states to match the properties of the nanoaperture. In this way we can access a symmetry protected state, i.e., a state constrained by the geometry of the interaction to retain its entanglement. In spite of the small volume of interaction, we show that the symmetry protected entangled state retains its main properties. This connection between nanophotonics and quantum optics probes the fundamental limits of the phenomenon of quantum interference.
2018
Symmetry Protection of Photonic Entanglement in the Interaction with a Single Nanoaperture / Büse, Alexander; Juan, Mathieu L.; Tischler, Nora; D'Ambrosio, Vincenzo; Sciarrino, Fabio; Marrucci, Lorenzo; Molina-Terriza, Gabriel. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 121:17(2018). [10.1103/PhysRevLett.121.173901]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/724109
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