Ultrafast control of Rabi oscillations in a polariton condensate
arXiv:1408.1289 · doi:10.1103/PhysRevLett.113.226401
Abstract
We report the experimental observation and control of space and time-resolved light-matter Rabi oscillations in a microcavity. Our setup precision and the system coherence are so high that coherent control can be implemented with amplification or switching off of the oscillations and even erasing of the polariton density by optical pulses. The data is reproduced by a fundamental quantum optical model with excellent accuracy, providing new insights on the key components that rule the polariton dynamics.
5 pages, 3 figures, supplementary 7 pages, 4 figures. Supplementary videos: https://drive.google.com/folderview?id=0B0QCllnLqdyBNjlMLTdjZlNhbTQ&usp=sharing
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- Quantum-fluid dynamics of microcavity polaritons
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Cited by in corpus (7)
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- All optical Controlled-NOT quantum gate based on an exciton-polariton circuit
- Exciton-Polariton Oscillations in Real Space
- Photon-photon polaritons in chi(2) microresonators
- Coherent Contributions to Population Dynamics in a Semiconductor Microcavity
- Formation of nonlinear X-waves in condensed matter systems
- Polaritonic linear dynamic in Keldysh formalism