We have observed polariton spin quantum beats under transverse magnetic field and circular polarization excitation (Voigt configuration) by time-resolved photoluminescence spectroscopy. The temporal behaviour of the beats strongly differs depending on whether the excitation is resonant or not with the lower polariton branch. As in bare quantum wells, we show that this is the consequence of the hole spin instability under non-resonant excitation. In both cases, we evidence a dependence on the cavity detuning δ of the electron effective Landé g-factor (geff). This is attributed to strong coupling regime, where the bare electron Landé g-factor is depends on the polariton exciton component. All these characteristics are well described by a simplified model, which takes into account the transfer dynamics between two classes of polaritons.
Spin quantum beats in semiconductor microcavities in the strong coupling regime / Panzarini, G.; Molinari, Elisa. - In: PHYSICA STATUS SOLIDI. A, APPLIED RESEARCH. - ISSN 0031-8965. - STAMPA. - 190:2(2002), pp. 369-373. [10.1002/1521-396X(200204)190:2<369::AID-PSSA369>3.0.CO;2-0]
Spin quantum beats in semiconductor microcavities in the strong coupling regime
MOLINARI, Elisa
2002
Abstract
We have observed polariton spin quantum beats under transverse magnetic field and circular polarization excitation (Voigt configuration) by time-resolved photoluminescence spectroscopy. The temporal behaviour of the beats strongly differs depending on whether the excitation is resonant or not with the lower polariton branch. As in bare quantum wells, we show that this is the consequence of the hole spin instability under non-resonant excitation. In both cases, we evidence a dependence on the cavity detuning δ of the electron effective Landé g-factor (geff). This is attributed to strong coupling regime, where the bare electron Landé g-factor is depends on the polariton exciton component. All these characteristics are well described by a simplified model, which takes into account the transfer dynamics between two classes of polaritons.Pubblicazioni consigliate
I metadati presenti in IRIS UNIMORE sono rilasciati con licenza Creative Commons CC0 1.0 Universal, mentre i file delle pubblicazioni sono rilasciati con licenza Attribuzione 4.0 Internazionale (CC BY 4.0), salvo diversa indicazione.
In caso di violazione di copyright, contattare Supporto Iris