Steingrube Daniel S, Kretschmar Martin, Hoff Dominik, Schulz Emilia, Binhammer Thomas, Hansinger Peter, Paulus Gerhard G, Morgner Uwe, Kovačev Milutin
Leibniz Universität Hannover, Institut für Quantenoptik, Welfengarten 1, D-30167 Hannover, Germany.
Opt Express. 2012 Oct 8;20(21):24049-58. doi: 10.1364/OE.20.024049.
The temporal dynamics of ultrashort laser pulses undergoing filamentary propagation are investigated with a real-time stereographic above-threshold ionization (ATI) phasemeter. The experimental setup is capable of measuring the pulse duration as well as the carrier-envelope phase distribution of pulses originating from a femtosecond filament, which is either truncated in length or fully propagated. Truncation, by means of a semi-infinite gas cell, allows to elucidate the nonlinear evolution and temporal dynamics of ultrashort laser pulses as a function of the propagation length. We observe the formation of few-cycle pulses as well as temporal pulse splitting dynamics during the propagation of the pulse inside the filament. For the first time, we demonstrate the compression of 35 fs pulses down to a duration of sub-4 fs in a single femtosecond filament. This corresponds to sub-1.5 cycles of the electric field.
利用实时立体超阈值电离(ATI)相位计研究了超短激光脉冲丝状传播的时间动态特性。该实验装置能够测量源自飞秒细丝的脉冲的持续时间以及载波包络相位分布,该细丝的长度可以是截断的或完全传播的。通过半无限气室进行截断,可以阐明超短激光脉冲的非线性演化和时间动态特性与传播长度的函数关系。我们观察到在细丝内部脉冲传播过程中少周期脉冲的形成以及时间脉冲分裂动态。首次在单个飞秒细丝中证明了将35 fs脉冲压缩至亚4 fs的持续时间。这对应于电场的亚1.5个周期。