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Josephson vortices induced by phase twisting a polariton superfluid

Academic Article
Publication Date:
2019
abstract:
Quantum fluids of light are an emerging platform for energy-efficient signal processing, ultrasensitive interferometry and quantum simulators at elevated temperatures. Here we demonstrate all-optical control of the topological excitations in a large polariton condensate realizing the bosonic analogue of a long Josephson junction and inducing the nucleation of Josephson vortices. When a phase difference is imposed at the boundaries of the condensate, two extended regions become separated by a sharp phase jump of pi radians and a solitonic depletion of the density, forming an insulating barrier with a suppressed order parameter. The superfluid behaviour-characterized by a smooth phase gradient across the system instead of the sharp phase jump-is recovered at higher polariton densities and is mediated by the nucleation of Josephson vortices within the barrier. Our results contribute to the understanding of dissipation and stability of elementary excitations in macroscale quantum systems.
Iris type:
01.01 Articolo in rivista
Keywords:
exciton polariton; Josephson vortices; quantum vortex; Josephson junction; phase pinning; coherence; interferometry; phase jump
List of contributors:
Caputo, Davide; Sanvitto, Daniele; Ballarini, Dario; Gigli, Giuseppe; Dominici, Lorenzo; DE GIORGI, Milena
Authors of the University:
BALLARINI DARIO
DE GIORGI MILENA
DOMINICI LORENZO
SANVITTO DANIELE
Handle:
https://iris.cnr.it/handle/20.500.14243/426036
Published in:
NATURE PHOTONICS (PRINT)
Journal
  • Overview

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URL

https://www.nature.com/articles/s41566-019-0425-3
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