Heyne Karsten, Huse Nils, Dreyer Jens, Nibbering Erik T J, Elsaesser Thomas, Mukamel Shaul
Max-Born-Institut fur Nichtlineare Optik und Kurzzeitspektroskopie, Max-Born-Strasse 2A, D-12489 Berlin, Germany.
J Chem Phys. 2004 Jul 8;121(2):902-13. doi: 10.1063/1.1762873.
Ultrafast vibrational dynamics of cyclic hydrogen bonded dimers and the underlying microscopic interactions are studied in temporally and spectrally resolved pump-probe experiments with 100 fs time resolution. Femtosecond excitation of the O-H and/or O-D stretching mode gives rise to pronounced changes of the O-H/O-D stretching absorption displaying both rate-like kinetic and oscillatory components. A lifetime of 200 fs is measured for the v=1 state of the O-H stretching oscillator. The strong oscillatory absorption changes are due to impulsively driven coherent wave packet motions along several low-frequency modes of the dimer between 50 and 170 cm(-1). Such wave packets generated via coherent excitation of the high-frequency O-H/O-D stretching oscillators represent a clear manifestation of the anharmonic coupling of low- and high-frequency modes. The underdamped low-frequency motions dephase on a time scale of 1-2 ps. Calculations of the vibrational potential energy surface based on density functional theory give the frequencies, anharmonic couplings, and microscopic elongations of the low-frequency modes, among them intermolecular hydrogen bond vibrations. Oscillations due to the excitonic coupling between the two O-H or O-D stretching oscillators are absent as is independently confirmed by experiments on mixed dimers with uncoupled O-H and O-D stretching oscillators.
通过具有100 fs时间分辨率的时间和光谱分辨泵浦 - 探测实验,研究了环状氢键二聚体的超快振动动力学及其潜在的微观相互作用。对O - H和/或O - D伸缩模式的飞秒激发导致O - H/O - D伸缩吸收的显著变化,显示出类似速率的动力学和振荡成分。测量到O - H伸缩振子v = 1态的寿命为200 fs。强烈的振荡吸收变化是由于沿着二聚体50至170 cm(-1)之间的几个低频模式的脉冲驱动相干波包运动。通过高频O - H/O - D伸缩振子的相干激发产生的这种波包代表了低频和高频模式非谐耦合的明显表现。欠阻尼低频运动在1 - 2 ps的时间尺度上失相。基于密度泛函理论的振动势能面计算给出了低频模式的频率、非谐耦合和微观伸长,其中包括分子间氢键振动。由两个O - H或O - D伸缩振子之间的激子耦合引起的振荡不存在,这通过对具有未耦合O - H和O - D伸缩振子的混合二聚体的实验得到独立证实。