Dhamija Shaina, Bhutani Garima, Jayachandran Ajay, De Arijit K
Condensed Phase Dynamics Group, Department of Chemical Sciences, Indian Institute of Science Education and Research Mohali, Knowledge City, Sector 81, SAS Nagar, Punjab 140306, India.
J Phys Chem A. 2022 Feb 24;126(7):1019-1032. doi: 10.1021/acs.jpca.1c10566. Epub 2022 Feb 10.
The usefulness of a chirped broadband probe and spectral dispersion to obtain Raman spectra under nonresonant/resonant impulsive excitation is revisited. A general methodology is presented that inherently takes care of phasing the time-domain low-frequency oscillations without probe pulse compression and retrieves the absolute phase of the oscillations. As test beds, neat solvents (CCl, CHCl, and CHCl) are used. Observation of periodic intensity modulation along detection wavelengths for particular modes is explained using a simple electric field interaction picture. This method is extended to diatomic molecule (iodine) and polyatomic molecules (Nile blue and methylene blue) to assign vibrational frequencies in ground/excited electronic state that are supported by density functional theory calculations. A comparison between frequency-domain and time-domain counterparts, i.e., and using degenerate pump-probe pairs is presented, and most importantly, it is shown how impulsive stimulated Raman scattering using chirped broadband probe retains unique advantages offered by both.
重新审视了啁啾宽带探测和光谱色散在非共振/共振脉冲激发下获取拉曼光谱的有用性。提出了一种通用方法,该方法在不进行探测脉冲压缩的情况下固有地处理时域低频振荡的相位,并检索振荡的绝对相位。使用纯溶剂(CCl、CHCl和CHCl)作为测试平台。使用简单的电场相互作用图像解释了特定模式沿检测波长的周期性强度调制的观察结果。该方法扩展到双原子分子(碘)和多原子分子(尼罗蓝和亚甲基蓝),以确定基态/激发电子态中的振动频率,这得到了密度泛函理论计算的支持。给出了频域和时域对应物(即使用简并泵浦-探测对的 和 )之间的比较,最重要的是,展示了使用啁啾宽带探测的脉冲受激拉曼散射如何保留两者提供的独特优势。