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Frequency-domain time-resolved four wave mixing spectroscopy of vibrational coherence transfer with single-color excitation

机译:单色激发的振动相干传递的频域时间分辨四波混合光谱

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Triply vibrationally enhanced four-wave mixing spectroscopy is employed to observe vibrational coherence transfer between the asymmetric and symmetric CO-stretching modes of rhodium(I) dicarbonyl acetylacetonate (RDC). Coherence transfer is a nonradiative transition of a coherent superposition of quantum states to a different coherent superposition due to coupling of the vibrational modes through the bath. All three excitation pulses in the experiment are resonant with a single quantum coherence, but coherence transfer results in new coherences with different frequencies., The new output frequency is observed with a monochromator that resolves it from the stronger peak at the original excitation frequency. This technique spectrally resolves pathways that include coherence transfer, discriminates against spectral features created solely by radiative transitions, and temporally resolves modulations created by interference between different coherence transfer pathways. Redfield theory simulates the temporal modulations in the impulsive limit, but it is also clear that coherence transfer violates the secular approximation invoked in most Redfield theories. Instead, it requires non-Markovian and bath memory effects. RDC may provide a simple model,for the development of theories that incorporate these effects.
机译:采用三重振动增强四波混合光谱法观察二羰基乙酰丙酮铑(I)铑(I)的不对称和对称CO拉伸模式之间的振动相干转移。相干传递是由于通过浴的振动模式的耦合,量子态的相干叠加向不同的相干叠加的非辐射转变。实验中的所有三个激发脉冲都具有单个量子相干共振,但是相干转移会导致不同频率的新相干。用单色仪观察到新的输出频率,该单色仪将其从原始激发频率下的较强峰中解析出来。该技术从光谱上解析包括相干传递的路径,区分仅由辐射跃迁产生的光谱特征,并在时间上解析由不同相干传递路径之间的干扰所产生的调制。 Redfield理论在脉冲极限中模拟了时间调制,但是很明显,相干传递违反了大多数Redfield理论中调用的长期近似。相反,它需要非马尔可夫和浴记忆效应。 RDC可以为包含这些影响的理论的发展提供一个简单的模型。

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