Demonstrating the decoupling regime of the electron-phonon interaction in a quantum dot using chirped optical excitation

Excitation of a semiconductor quantum dot with a chirped laser pulse allows excitons to be created by rapid adiabatic passage. In quantum dots this process can be greatly hindered by the coupling to phonons. Here we add a high chirp rate to ultrashort laser pulses and use these pulses to excite a si...

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Veröffentlicht in:Physical review. B 2017-06, Vol.95 (24), p.241306(R), Article 241306
Hauptverfasser: Kaldewey, Timo, Lüker, Sebastian, Kuhlmann, Andreas V., Valentin, Sascha R., Chauveau, Jean-Michel, Ludwig, Arne, Wieck, Andreas D., Reiter, Doris E., Kuhn, Tilmann, Warburton, Richard J.
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Sprache:eng
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Zusammenfassung:Excitation of a semiconductor quantum dot with a chirped laser pulse allows excitons to be created by rapid adiabatic passage. In quantum dots this process can be greatly hindered by the coupling to phonons. Here we add a high chirp rate to ultrashort laser pulses and use these pulses to excite a single quantum dot. We demonstrate that we enter a regime where the exciton-phonon coupling is effective for small pulse areas, while for higher pulse areas a decoupling of the exciton from the phonons occurs. We thus discover a reappearance of rapid adiabatic passage, in analogy to the predicted reappearance of Rabi rotations at high pulse areas. The measured results are in good agreement with theoretical calculations.
ISSN:2469-9950
2469-9969
DOI:10.1103/PhysRevB.95.241306