Palacino-González Elisa, Gelin Maxim F, Domcke Wolfgang
Department of Chemistry, Technische Universität München, D-85747, Garching, Germany.
Phys Chem Chem Phys. 2017 Dec 13;19(48):32307-32319. doi: 10.1039/c7cp04810f.
We investigate femtosecond double-pump single-molecule signals in the strong-field regime, which is characterized by nonlinear scaling of the signal with the intensity of the pump pulses. The signals can be decomposed into population and coherence contributions. In contrast to the weak-field regime (in which only the coherence contribution is important) both contributions are relevant in the strong-field regime and reveal the vibrational dynamics of the chromophore. Other than in the weak-field regime, the detection of vibrational beatings is not limited by the electronic dephasing time of the chromophore. Moreover, the signals in the strong-field regime are more robust with respect to the environment-induced modulation of the chromophore parameters. It is shown that excited-state absorption in chromophores with three electronic states is reflected in the phase dependence of single-molecule signals. The simulations reveal that the information content of femtosecond double-pump single-molecule signals is enhanced in the strong-coupling regime.
我们研究了强场区域中的飞秒双泵浦单分子信号,该区域的特征是信号随泵浦脉冲强度呈非线性缩放。这些信号可分解为布居和相干贡献。与弱场区域(其中只有相干贡献是重要的)不同,在强场区域中这两种贡献都很重要,并揭示了发色团的振动动力学。与弱场区域不同,振动拍频的检测不受发色团电子退相时间的限制。此外,强场区域中的信号在发色团参数受环境诱导调制方面更稳健。结果表明,具有三个电子态的发色团中的激发态吸收反映在单分子信号的相位依赖性中。模拟结果表明,在强耦合区域中飞秒双泵浦单分子信号的信息含量会增强。