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Photonic Quantum Computing

Quantum correlations in the nonperturbative regime of semiconductor microcavities.

PubMed
Authors: Ell C, Brick P, Hübner M, Lee ES, Lyngnes O, Prineas JP, Khitrova G, Gibbs HM, Kira M, Jahnke F, Koch SW, Deppe DG, Huffaker DL

Year

2000

Paper ID

13274

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

62

Citations

35

Abstract

The nonlinear optical response of semiconductor microcavities in the nonpertubative regime is studied in resonant single-beam-transmission and pump-probe experiments. In both cases a pronounced third transmission peak lying spectrally between the two normal modes is observed. A fully quantized theory is essential for the agreement with the experimental observations, demonstrating that quantum fluctuations leading to intraband polarizations are responsible for this effect.

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  • This paper contributes to the Photonic Quantum Computing research area in the Quantum Articles archive.
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  • The nonlinear optical response of semiconductor microcavities in the nonpertubative regime is studied in resonant single-beam-transmission and pump-probe experiments.

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