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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Observation of bound and antibound states of two excitons in GaAs single quantum well by two-dimensional coherent spectroscopy
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Observation of bound and antibound states of two excitons in GaAs single quantum well by two-dimensional coherent spectroscopy

机译:二维相干光谱法观察GaAs单量子阱中两个激子的束缚态和反束缚态

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We study the bound and antibound states of two excitons in a GaAs single quantum well by two-dimensional coherent spectroscopy. We also propose a method to directly observe the amplitude and phase (real and imaginary parts) of optical fields by using a heterodyne interference technique and through synchronized detection of the interference signals. In this scheme, the mechanical fluctuation of an unstabilized interferometer does not affect the measurement. In addition, the amplitude and phase of the optical fields, resulting from the coherent interactions between light and matter, are directly obtained by comparing a reference heterodyne beating signal by using a two-phase lock-in amplifier. By using this method, the bound and antibound states of two excitons are observed. It is expected that the excitons are localized to the quantum islands and the lateral confinement induces the large repulsive energy between the two excitons.
机译:我们通过二维相干光谱研究了GaAs单量子阱中两个激子的束缚态和反束缚态。我们还提出了一种通过使用外差干涉技术并通过同步检测干涉信号直接观察光场的幅度和相位(实部和虚部)的方法。在此方案中,不稳定的干涉仪的机械波动不会影响测量。另外,通过使用两相锁定放大器比较参考外差拍打信号,可以直接获得由光和物质之间的相干相互作用导致的光场的幅度和相位。通过使用这种方法,观察到两个激子的结合和反结合状态。预计激子位于量子岛中,并且横向限制会在两个激子之间产生较大的排斥能。

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