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All-optical phase modulation in a cavity-polariton Mach-Zehnder interferometer

  • C. Sturm
  • , D. Tanese
  • , H. S. Nguyen
  • , H. Flayac
  • , E. Galopin
  • , A. Lemaître
  • , I. Sagnes
  • , D. Solnyshkov
  • , A. Amo
  • , G. Malpuech
  • , J. Bloch
  • Centre de Nanosciences et de Nanotechnologies
  • University of Leipzig
  • Institut Pascal

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Quantum fluids based on light is a highly developing research field, since they provide a nonlinear platform for developing optical functionalities and quantum simulators. An important issue in this context is the ability to coherently control the properties of the fluid. Here we propose an all-optical approach for controlling the phase of a flow of cavity-polaritons, making use of their strong interactions with localized excitons. Here we illustrate the potential of this method by implementing a compact exciton-polariton interferometer, which output intensity and polarization can be optically controlled. This interferometer is cascadable with already reported polariton devices and is promising for future polaritonic quantum optic experiments. Complex phase patterns could be also engineered using this optical method, providing a key tool to build photonic artificial gauge fields.

langue originaleAnglais
Numéro d'article3278
journalNature Communications
Volume5
Les DOIs
étatPublié - 11 févr. 2014
Modification externeOui

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