We use spontaneous (two-pulse) and stimulated (three-pulse) photon echoes for studying the coherent evolution of optically excited ensemble of trions which are localized in semiconductor CdTe/CdMgTe quantum well. Application of transverse magnetic field leads to the Larmor precession of the resident electron spins, which shuffles optically induced polarization between optically accessible and inaccessible states. This results in several spectacular phenomena. First, magnetic field induces oscillations of spontaneous photon echo amplitude. Second, in three-pulse excitation scheme, the photon echo decay is extended by several orders of magnitude. In this study, short-lived optical excitation which is created by the first pulse is coherently transferred into a long-lived electron spin state using the second optical pulse. This coherent spin state of electron ensemble persists much longer than any optical excitation in the system, preserving information on initial optical field, which can be retrieved as a photon
Язык оригиналаанглийский
Название основной публикацииSPIE NANOSCIENCE + ENGINEERING | 28 AUGUST - 1 SEPTEMBER 2016 Spintronics IX
Страницы99311V
DOI
СостояниеОпубликовано - 2016
СобытиеSPIE NANOSCIENCE + ENGINEERING | 28 AUGUST - 1 SEPTEMBER 2016
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Продолжительность: 28 авг 20161 сен 2016

конференция

конференцияSPIE NANOSCIENCE + ENGINEERING | 28 AUGUST - 1 SEPTEMBER 2016
Сокращенное названиеSpintronics IX
Период28/08/161/09/16

ID: 7597438