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Ultrafast time-resolved coherent degenerate four-wave-mixing spectroscopy for investigating molecular dynamics in different states

机译:超快时间分辨相干简并四波混频技术,用于研究不同状态下的分子动力学

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In this paper, ultrafast time-resolved coherent degenerate four-wave-mixing (DFWM) spectroscopy is performed to investigate molecular dynamics in the gaseous phase. Laser pulses lasting for 40 fs are used to create and monitor different vibrational eigenstates of iodine at room temperature (corresponding to a low saturation pressure of about 35 Pa). Using an internal time delay in the DFWM process resonant with the transition between the ground X-state and the excited B-state, the vibrational states of both the electronically excited and the ground states are detected as oscillations in the DFWM transient signal. The dynamics of either the electronically excited or ground state of iodine molecules obtained are consistent with the previous high temperature studies on the femtosecond time-resolved DWFM spectroscopy.
机译:本文采用超快时间分辨相干简并四波混合(DFWM)光谱研究气相中的分子动力学。持续40 fs的激光脉冲用于在室温下(对应于约35 Pa的低饱和压力)创建和监视碘的不同振动本征态。通过在DFWM过程中使用内部时间延迟,使之与基X态和受激B态之间的跃迁发生共振,可以将电子激发态和基态的振动状态检测为DFWM瞬态信号中的振荡。所获得的碘分子的电子激发态或基态的动力学与飞秒时间分辨DWFM光谱的先前高温研究一致。

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