Max Born Institut für Nichtlineare Optik und Kurzzeitspektroskopie, Berlin 12489, Germany.
Department Chemie, Ludwig-Maximilians-Universität München, München 81377, Germany.
J Phys Chem Lett. 2023 Jun 22;14(24):5505-5510. doi: 10.1021/acs.jpclett.3c01079. Epub 2023 Jun 8.
Electric forces acting on molecules in liquids at ambient temperature fluctuate at terahertz (THz) frequencies with a direct impact on their electronic and optical properties. We introduce the transient THz Stark effect to modify the electronic absorption spectra of dye molecules and, thus, elucidate and determine the underlying molecular interactions and dynamics. Picosecond electric fields of megavolts/cm induce a nonequilibrium response of the prototypical Betaine-30 in polar solution that is probed via transient absorption changes. The field-induced broadening of the absorption band follows the THz intensity in time, with a minor impact of solvent dynamics. The ground and excited state dipole energies in the THz field govern this response, allowing for a quantification of electric forces in a structurally frozen molecular environment.
在环境温度下,液体中的分子所受的电场力以太赫兹(THz)频率波动,对其电子和光学性质有直接影响。我们引入瞬态太赫兹斯塔克效应来改变染料分子的电子吸收光谱,从而阐明和确定潜在的分子相互作用和动力学。兆伏每厘米的皮秒电场会引起极性溶液中典型甜菜碱-30 的非平衡响应,通过瞬态吸收变化来探测。吸收带的场致展宽随时间随太赫兹强度变化,溶剂动力学的影响较小。太赫兹场中基态和激发态偶极能控制着这种响应,从而可以在结构冻结的分子环境中定量电场力。