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Signatures of Foerster and Dexter transfer processes in coupled nanostructures for linear and two dimensional coherent optical spectroscopy

机译:线性和二维相干光谱学中耦合纳米结构中Foerster和Dexter转移过程的特征

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In this manuscript, we study the impact of the two Coulomb induced resonance energy transfer processes, Foerster and Dexter coupling, on the spectral signatures obtained by double quantum coherence spectroscopy. We show that the specific coupling characteristics allow us to identify the underlying excitation transfer mechanism by means of specific signatures in coherent spectroscopy. Therefore, we control the microscopic calculated coupling strength of spin preserving and spin flipping Foerster transfer processes by varying the mutual orientation of the two quantum emitters. The calculated spectra reveal the optical selection rules altered by Foerster and Dexter coupling between two semiconductor quantum dots. We show that Dexter coupling between bright and dark two-exciton states occurs.
机译:在本手稿中,我们研究了两个库仑感应共振能量转移过程(Foerster和Dexter耦合)对通过双量子相干光谱学获得的光谱特征的影响。我们表明,特定的耦合特性使我们能够通过相干光谱中的特定标记来识别潜在的激发转移机制。因此,我们通过改变两个量子发射体的相互取向来控制自旋保持和自旋翻转Foerster转移过程的微观计算耦合强度。计算出的光谱揭示了由两个半导体量子点之间的Foerster和Dexter耦合改变的光学选择规则。我们表明,明亮和黑暗的两个激子状态之间的德克斯特耦合发生。

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