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Vortex and half-vortex dynamics in a spinor quantum fluid of interacting polaritons

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arxiv 1403.0487 v2 pith:3BFUYRO7 submitted 2014-03-03 cond-mat.quant-gas

Vortex and half-vortex dynamics in a spinor quantum fluid of interacting polaritons

classification cond-mat.quant-gas
keywords fluidphasevortexexcitationsfullhalfcondensatesdynamics
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Spinorial or multi-component Bose-Einstein condensates may sustain fractional quanta of circulation, vorticant topological excitations with half integer windings of phase and polarization. Matter-light quantum fluids, such as microcavity polaritons, represent a unique test bed for realising strongly interacting and out-of-equilibrium condensates. The direct access to the phase of their wavefunction enables us to pursue the quest of whether half vortices ---rather than full integer vortices--- are the fundamental topological excitations of a spinor polariton fluid. Here, we are able to directly generate by resonant pulsed excitations, a polariton fluid carrying either the half or full vortex states as initial condition, and to follow their coherent evolution using ultrafast holography. Surprisingly we observe a rich phenomenology that shows a stable evolution of a phase singularity in a single component as well as in the full vortex state, spiraling, splitting and branching of the initial cores under different regimes and the proliferation of many vortex anti-vortex pairs in self generated circular ripples. This allows us to devise the interplay of nonlinearity and sample disorder in shaping the fluid and driving the phase singularities dynamics

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