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Coherence specific signal detection via chiral pump-probe spectroscopy

机译:通过手性泵浦探针光谱法检测相干特定信号

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We examine transient circular dichroism (TRCD) spectroscopy as a technique to investigate signatures of exciton coherence dynamics under the influence of structured vibrational environments. We consider a pump-probe configuration with a linearly polarized pump and a circularly polarized probe, with a variable angle. between the two directions of propagation. In our theoretical formalism the signal is decomposed in chiral and achiral doorway and window functions. Using this formalism, we show that the chiral doorway component, which beats during the population time, can be isolated by comparing signals with different values of.. As in the majority of time-resolved pump-probe spectroscopy, the overall TRCD response shows signatures of both excited and ground state dynamics. However, we demonstrate that the chiral doorway function has only a weak ground state contribution, which can generally be neglected if an impulsive pump pulse is used. These findings suggest that the pump-probe configuration of optical TRCD in the impulsive limit has the potential to unambiguously probe quantum coherence beating in the excited state. We present numerical results for theoretical signals in an example dimer system. Published by AIP Publishing.
机译:我们研究了瞬态圆二色性(TRCD)光谱技术,以研究在结构振动环境的影响下激子相干动力学的特征。我们考虑具有线性极化泵和圆极化探头(具有可变角度)的泵探针配置。在两个传播方向之间。在我们的理论形式主义中,信号被分解为手性和非手性的门窗功能。使用这种形式主义,我们表明,可以通过比较具有不同λ值的信号来分离在种群时间内跳动的手性门道分量。与大多数时间分辨泵浦光谱法一样,整个TRCD响应都显示出特征和激发态动力学但是,我们证明了手性门道功能仅具有弱的基态贡献,如果使用脉冲泵浦脉冲,则通常可以忽略不计。这些发现表明,在脉冲极限中,光学TRCD的泵浦探针结构具有在激发态下明确探测量子相干跳动的潜力。我们在示例二聚体系统中给出了理论信号的数值结果。由AIP Publishing发布。

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