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Light-induced temperature jump causes power-dependent ultrafast kinetics of electrons generated in multiphoton ionization of liquid water

机译:光诱导的温度跃变导致液态水的多光子电离中产生的电子依赖功率的超快动力学

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摘要

Picosecond geminate recombination kinetics for electrons generated by multiphoton ionization of liquid water become power dependent when the radiance of the excitation light is greater than 0.3-0.5 TW/cm^2 (the terawatt regime). To elucidate the mechanism of this power dependence, tri- 400 nm photon ionization of water has been studied using pump-probe laser spectroscopy on the pico- and femtosecond time scales. We suggest that the observed kinetic transformations are caused by a rapid temperature jump in the sample. Such a jump is inherent to multiphoton ionization in the terawatt regime, when the absorption of the pump light along the optical path becomes very nonuniform. The heating of water is substantial (tens of degrees C) because the 3-photon quantum yield of the ionization is relatively low, ca. 0.42, and a large fraction of the excitation energy is released into the solvent bulk as heat. Evidence of the temperature jump is the observation of a red shift in the absorption spectrum of (thermalized) electron and by characteristic "flattening" of the thermalization dynamics in the near infra-red. The temperature jump in the terawatt regime might be ubiquitous in multiphoton ionization in molecular liquids. The implications of these observations for femtosecond pulse radiolysis of water are discussed.
机译:当激发光的辐射度大于0.3-0.5 TW / cm ^ 2(兆瓦级)时,液态水的多光子电离所产生的电子的皮秒级叠层复合动力学取决于功率。为了阐明这种功率依赖性的机理,已经使用皮秒级和飞秒级的泵浦激光光谱法研究了水的三400 nm光子电离。我们建议观察到的动力学转变是由样品中的快速温度跳跃引起的。当泵浦光沿光路的吸收变得非常不均匀时,这种跃变是兆瓦级多光子电离所固有的。水的加热相当大(数十摄氏度),因为电离的3光子量子产率相对较低。 0.42,很大一部分激发能作为热量释放到溶剂中。温度跳跃的证据是观察到(热化的)电子的吸收光谱发生红移,并且通过近红外热化动力学的特征“变平”来观察。在分子液体中的多光子电离中,兆瓦级温度的升高可能无处不在。讨论了这些观察结果对飞秒脉冲水分解的影响。

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