Half-solitons in a polariton quantum fluid behave like magnetic monopoles
arXiv:1204.3564 · doi:10.1038/nphys2406
Abstract
Monopoles are magnetic charges, point-like sources of magnetic field. Contrary to electric charges they are absent in Maxwell's equations and have never been observed as fundamental particles. Quantum fluids such as spinor Bose-Einstein condensates have been predicted to show monopoles in the form of excitations combining phase and spin topologies. Thanks to its unique spin structure and the direct optical control of the fluid wavefunction, an ideal system to experimentally explore this phenomenon is a condensate of exciton-polaritons in a semiconductor microcavity. We use this system to create half-solitons, non-linear excitations with mixed spin-phase geometry. By tracking their trajectory, we demonstrate that half-solitons behave as monopoles, magnetic charges accelerated along an effective magnetic field present in the microcavity. The field-induced spatial separation of half-solitons of opposite charges opens the way to the generation of magnetic currents in a quantum fluid.
19 pages, includes Supplmentary Information
References in corpus (8)
- Observation of Superfluidity of Polaritons in Semiconductor Microcavities
- Spontaneous symmetry breaking in a quenched ferromagnetic spinor Bose condensate
- Quantised Vortices in an Exciton-Polariton Fluid
- Dirac Strings and Magnetic Monopoles in Spin Ice Dy2Ti2O7
- Half-vortices in polariton condensates
- Oblique dark solitons in supersonic flow of a Bose-Einstein condensate
- Light Engineering of the Polariton Landscape in Semiconductor Microcavities
- Hydrodynamic nucleation of vortices and solitons in a resonantly excited polariton superfluid
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- Phase-controlled bistability of a dark soliton train in a polariton fluid
- Interaction-Shaped Vortex-Antivortex Lattices in Polariton Fluids
- Critical spin superflow in a spinor Bose-Einstein condensate
- Observation of Zitterbewegung in photonic microcavities
- Optical control of spin textures in quasi-one-dimensional polariton condensates
- Photonic Versus Electronic Quantum Anomalous Hall Effect
- All optical Controlled-NOT quantum gate based on an exciton-polariton circuit
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- Spontaneous generation, enhanced propagation and optical imprinting of quantized vortices and dark solitons in a polariton superfluid: towards the control of quantum turbulence
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- Parametric Inversion of Spin Currents in Semiconductor Microcavities
- Theory of nonlinear excitonic response of hybrid organic perovskites in the regime of strong light-matter coupling
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