propagation and survival of frequency-bin entangled photons in metallic nanostructures

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2015
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Abstract
We report on the design of two plasmonic nanostructures and the propagation of frequency-bin entangled photons through them. The experimental findings clearly show the robustness of frequency-bin entanglement, which survives after interactions with both a hybrid plasmo-photonic structure, and a nano-pillar array. These results confirm that quantum states can be encoded into the collective motion of a many-body electronic system without demolishing their quantum nature, and pave the way towards applications of plasmonic structures in quantum information.
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laurent2015nanophotonicspropagation Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Olislager Laurent;Kubo Wakana;Tanaka Takuo;Ungureanu Simona;Vallée Renaud A. L.;Kolaric Branko;Emplit Philippe;Massar Serge
Journal chinese journal of lung cancer
Year 2015
DOI
10.1515/nanoph-2015-0011
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