Magnetic-field control of photon echo from the electron-trion system in a CdTe quantum well: shuffling coherence between optically accessible and inaccessible states

We report on magnetic field-induced oscillations of the photon echo signal from negatively charged excitons in a CdTe/(Cd,Mg)Te semiconductor quantum well. The oscillatory signal is due to Larmor precession of the electron spin about a transverse magnetic field and depends sensitively on the polariz...

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Veröffentlicht in:Physical review letters 2012-10, Vol.109 (15), p.157403-157403, Article 157403
Hauptverfasser: Langer, L, Poltavtsev, S V, Yugova, I A, Yakovlev, D R, Karczewski, G, Wojtowicz, T, Kossut, J, Akimov, I A, Bayer, M
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Sprache:eng
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Zusammenfassung:We report on magnetic field-induced oscillations of the photon echo signal from negatively charged excitons in a CdTe/(Cd,Mg)Te semiconductor quantum well. The oscillatory signal is due to Larmor precession of the electron spin about a transverse magnetic field and depends sensitively on the polarization configuration of the exciting and refocusing pulses. The echo amplitude can be fully tuned from the maximum down to zero depending on the time delay between the two pulses and the magnetic-field strength. The results are explained in terms of the optical Bloch equations accounting for the spin level structure of electrons and trions.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.109.157403