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Four-wave mixing spectroscopy of ultraviolet excitons in strained GaN

机译:紧张GaN中紫外线子的四波混合光谱

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We perform degenerate four-wave-mixing (FWM) studies of GaN excitons especially for an understanding of the strain-fields in the heteroepitaxial films. The shifts of exciton energies and their beating oscillation variations highlight the biaxial strain, allowing for a precise determination of the strain parameters. The uniaxial strain field can be characterized by the polarization dependence of FWM, which shows distinct polarizations and energy variations depending on the sample and its position. The minimum changes of the polarized FWM intensity and exchange energy splittings correspond to a uniaxial strain of 5.0 × 10~(-5), which currently gives a lower resolution limit of this technique and is comparable with that of conventional X-ray diffraction. In the time-evolutions, we investigate the strain effects on the phase of the quantum beats (QBs), giving insight into the excitons interactions. By using time-resolved FWM, difference between two-types of exciton transitions is identified. In addition, coherent manipulations of QBs are successfully realized in the FWM with a Michelson interferometer.
机译:我们对GaN激子的退化四波混合(FWM)研究特别是为了了解异质膜膜中的应变场。激子能量的偏移及其跳动振荡变化突出了双轴应变,从而允许精确地确定应变参数。单轴应变场可以特征在于FWM的偏振依赖性,其示出了根据样品及其位置的明显偏振和能量变化。偏振FWM强度和交换能量分裂的最小变化对应于5.0×10〜(-5)的单轴应变,目前提供了该技术的较低分辨率极限,并且与传统X射线衍射相当。在时间的过程中,我们研究了对量子拍(QBS)的相位的应变影响,介绍了激子相互作用。通过使用时间分辨的FWM,识别了两种激动转换之间的差异。此外,QBS的相干操纵与迈克尔逊干涉仪在FWM中成功实现。

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