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Selective excitation through multiphonon emission of ZnCdTe quantum dots embedded in Zn-rich ZnCdTe quantum wells

机译:通过多声子发射对富Zn ZnCdTe量子阱中嵌入的ZnCdTe量子点的选择性激发

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摘要

We study the energy relaxation of electron-hole pairs in ZnCdTe quantum wells, which is followed by a trapping in self-organized CdTe/ZnTe islands. An optical-phonon emission cascade is observed, giving rise to a selective population of the Cd-rich islands. Using photoluminescence excitation spectroscopy, we determine the energy of the phonons involved in the process. We study also the evolution of the quantum efficiency of the phonon emission process as a function of the photon energy, the number of emitted phonons, and temperature. Moreover, we evidence coupled exciton-phonon states in the quantum dots which explain the trapping of the electron-hole pairs and their recombination.
机译:我们研究了ZnCdTe量子阱中电子-空穴对的能量弛豫,然后在自组织的CdTe / ZnTe岛中进行了俘获。观察到光声子发射级联,从而产生了富Cd岛的选择性种群。使用光致发光激发光谱,我们确定了该过程中所涉及的声子的能量。我们还研究了声子发射过程的量子效率随光子能量,发射的声子数和温度的变化。此外,我们证明了量子点中的激子-声子耦合态,可以解释电子-空穴对的俘获及其重组。

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