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Deconvolution of optical multidimensional coherent spectra

机译:光学多维相干光谱的反卷积

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Optical coherent multidimensional spectroscopy is a powerful technique for unraveling complex and congested spectra by spreading them across multiple dimensions, removing the effects of inhomogeneity, and revealing underlying correlations. As the technique matures, the focus is shifting from understanding the technique itself to using it to probe the underlying dynamics in the system being studied. However, these dynamics can be difficult to discern because they are convolved with the nonlinear optical response of the system. Inspired by methods used to deblur images, we present a method for deconvolving the underlying dynamics from the optical response. To demonstrate the method, we extract the many-particle diffusion Green’s functions for excitons in a semiconductor quantum well from two-dimensional coherent spectra.
机译:光学相干多维光谱技术是一项强大的技术,可通过将复杂光谱和拥挤光谱散布在多个维度上,消除不均匀性的影响并揭示潜在的相关性来揭示它们。随着技术的成熟,重点从了解技术本身转移到使用它来探究正在研究的系统中的基本动态。但是,这些动力学可能难以辨认,因为它们与系统的非线性光学响应有关。受用于对图像进行模糊处理的方法的启发,我们提出了一种从光学响应中解卷基础动力学的方法。为了演示该方法,我们从二维相干光谱中提取了半导体量子阱中激子的多粒子扩散格林函数。

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