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- W2266037963 abstract "We use terahertz pulses to induce resonant transitions between the eigenstates of optically generated exciton populations in a high-quality semiconductor quantum well sample. Monitoring the excitonic photoluminescence, we observe transient quenching of the 1s exciton emission, which we attribute to the terahertz-induced 1s-to-2p excitation. Simultaneously, a pronounced enhancement of the 2s exciton emission is observed, despite the 1s-to-2s transition being dipole forbidden. A microscopic many-body theory explains the experimental observations as a Coulomb-scattering mixing of the 2s and 2p states, yielding an effective terahertz transition between the 1s and 2s populations." @default.
- W2266037963 created "2016-06-24" @default.
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- W2266037963 date "2013-03-26" @default.
- W2266037963 modified "2023-09-25" @default.
- W2266037963 title "Observation of Forbidden Exciton Transitions Mediated by Coulomb Interactions in Photoexcited Semiconductor Quantum Wells" @default.
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- W2266037963 doi "https://doi.org/10.1103/physrevlett.110.137404" @default.
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