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INTER-LANDAU-LEVEL TRANSITIONS AND ULTRAFAST DYNAMICS OF 2D MAGNETOEXCITONS

机译:二维磁激子的LANDAU间能级跃迁和超快动力学

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We study the role of many-body correlations in the ultrafast dynamics of quantum well magnetoexcitons. In linear response, inter-Landau level transitions are suppressed if magnetic field is stronger than magnetoexciton binding energy. However, in nonlinear response, two-electron Auger processes remain unsuppressed even at very strong field. We show that Auger scattering plays a dominant role in the coherent exciton dynamics in strong magnetic field. We perform numerical calculations of four-wave-mixing (FWM) polarization which incorporate Auger-processes nonperturbatively, and find a strong amplitude enhancement of the FWM signal accompanied with polarization oscillations at negative time delays. We identify these oscillations as quantum beats between dark two-exciton states related to each other via Auger processes.
机译:我们研究了量子阱磁激子的超快动力学中多体关联的作用。在线性响应中,如果磁场强于磁激子束缚能,则蓝道间能级跃迁被抑制。但是,在非线性响应中,即使在非常强的电场下,二电子俄歇过程也不会受到抑制。我们表明,俄歇散射在强磁场中的相干激子动力学中起主要作用。我们进行了四波混频(FWM)极化的数值计算,其中无扰动地结合了俄歇过程,并发现FWM信号的幅度增强很强,并伴随着负时延的极化振荡。我们将这些振荡识别为通过俄歇过程彼此相关的暗两个激子状态之间的量子拍。

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