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Incoherent population mixing contributions to phase-modulation two-dimensional coherent excitation spectra

机译:相连的人口混合贡献对相调相二维相干励磁光谱

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We present theoretical and experimental results showing the effects of incoherent population mixing on two-dimensional (2D) coherent excitation spectra that are measured via a time-integrated population and phase-sensitive detection. The technique uses four collinear ultrashort pulses and phase modulation to acquire two-dimensional spectra by isolating specific nonlinear contributions to the photoluminescence or photocurrent excitation signal. We demonstrate that an incoherent contribution to the measured line shape, arising from nonlinear population dynamics over the entire photoexcitation lifetime, generates a similar line shape to the expected 2D coherent spectra in condensed-phase systems. In those systems, photoexcitations are mobile such that inter-particle interactions are important on any time scale, including those long compared with the 2D coherent experiment. Measurements on a semicrystalline polymeric semiconductor film at low temperatures show that, in some conditions in which multi-exciton interactions are suppressed, the technique predominantly detects coherent signals and can be used, in our example, to extract homogeneous line widths. The same method used on a lead-halide perovskite photovoltaic cell shows that incoherent population mixing of mobile photocarriers can dominate the measured signal since carrier-carrier bimolecular scattering is active even at low excitation densities, which hides the coherent contribution to the spectral line shape. In this example, the intensity dependence of the signal matches the theoretical predictions over more than two orders of magnitude, confirming the incoherent nature of the signal. While these effects are typically not significant in dilute solution environments, we demonstrate the necessity to characterize, in condensed-phase materials systems, the extent of nonlinear population dynamics of photoexcitations (excitons, charge carriers, etc.) in the execution of this powerful population-detected coherent spectroscopy technique. Published by AIP Publishing.
机译:我们提出了理论和实验结果,显示了通过时间综合群体和相敏检测测量的二维(2D)相干激发光谱对不连贯群体混合的影响。该技术采用四个共光脉冲和相位调制来通过将特定的非线性贡献隔离到光致发光或光电流激励信号来获取二维光谱。我们证明,在整个光呼吸寿命中由非线性群体动态产生的对测量线形状的非连锁贡献产生了与冷凝相系统中的预期2D相干光谱相似的线形状。在这些系统中,光透镜是移动的,使得粒子间相互作用在任何时间尺度上都很重要,包括与2D相干实验相比的那些。在低温下的半结晶半导体膜上的测量表明,在抑制多激子相互作用的一些条件下,该技术主要检测相干信号,并且可以在我们的示例中使用,以提取均匀的线宽。在卤化卤化锂钙钛矿光伏电池中的相同方法表明,移动光载体的不相停群体混合可以使测量信号占主导地位,因为即使在低激发密度下也活跃的载体载体分散散射,其隐藏着谱线形状的相干贡献。在该示例中,信号的强度依赖性与大幅度超过两个数量级的理论预测匹配,确认信号的不连贯性质。虽然这些效果通常在稀释溶液环境中通常不显着,但我们证明了在执行这种强大的人群中,在冷凝相材料系统中表征的必要性,在冷凝相材料体系中,在光透视(激子,电荷载体等)的非线性群体动态的程度 - 被切除的相干光谱技术。通过AIP发布发布。

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