Opt Lett. 2015 Aug 1;40(15):3464-7. doi: 10.1364/OL.40.003464.
Attosecond transient absorption spectroscopy has thus far been lacking the capability to simultaneously characterize the intense laser pulses at work within a time-resolved quantum-dynamics experiment. However, precise knowledge of these pulses is key to extracting quantitative information in strong-field highly nonlinear light-matter interactions. Here, we introduce and experimentally demonstrate an ultrafast metrology tool based on the time-delay-dependent phase shift imprinted on a strong-field-driven resonance. Since we analyze the signature of the laser pulse interacting with the absorbing spectroscopy target, the laser pulse duration and intensity are determined in situ. As we also show, this approach allows for the quantification of time-dependent bound-state dynamics in one and the same experiment. In the future, such experimental data will facilitate more precise tests of strong-field dynamics theories.
迄今,飞秒瞬态吸收光谱学一直缺乏在时间分辨量子动力学实验中同时对作用中的强激光脉冲进行特性描述的能力。然而,精确了解这些脉冲是从强场高度非线性光物质相互作用中提取定量信息的关键。在此,我们介绍并实验演示了一种超快计量工具,它基于强场驱动共振上的时间延迟相关相移印记。由于我们分析的是激光脉冲与吸收光谱目标相互作用的特征,因此可以在现场确定激光脉冲的持续时间和强度。正如我们所展示的,这种方法可以在同一个实验中定量研究随时间变化的束缚态动力学。在未来,这样的实验数据将有助于更精确地检验强场动力学理论。