Jansen Thomas la Cour, Hayashi Tomoyuki, Zhuang Wei, Mukamel Shaul
Institute for Theoretical Physics and Materials Science Centre, University of Groningen, The Netherlands.
J Chem Phys. 2005 Sep 15;123(11):114504. doi: 10.1063/1.2008251.
The effects of hydrogen-bond forming and breaking kinetics on the linear and coherent third-order infrared spectra of the OH stretch of HOD in D2O are described by Markovian, not necessarily Gaussian, fluctuations and simulated using the stochastic Liouville equations. Slow (0.5 ps) fluctuations are represented by a collective electrostatic coordinate, whereas fast (<100 fs) frequency fluctuations are described using either a second collective electrostatic coordinate or a four-state jump (FSJ) model for hydrogen-bonding configurations. Parameters for both models were obtained using a 1-ns molecular-dynamics trajectory calculated using the TIP4P force field combined with an electrostatic ab initio map. The asymmetry of the photon-echo spectra (larger linewidth on the blue side than on the red side) predicted by the FSJ is in better agreement with recent experiments.
氢键形成和断裂动力学对重水(D₂O)中重水合氢离子(HOD)的OH伸缩振动的线性和相干三阶红外光谱的影响,通过马尔可夫(不一定是高斯)涨落来描述,并使用随机刘维尔方程进行模拟。缓慢(0.5皮秒)的涨落由一个集体静电坐标表示,而快速(<100飞秒)的频率涨落则使用第二个集体静电坐标或氢键构型的四态跃迁(FSJ)模型来描述。这两个模型的参数是使用结合了静电从头算图谱的TIP4P力场计算的1纳秒分子动力学轨迹获得的。FSJ预测的光子回波光谱的不对称性(蓝色一侧的线宽大于红色一侧)与最近的实验结果更吻合。