Blackett Laboratory, Imperial College, London SW7 2AZ, United Kingdom.
Phys Rev Lett. 2010 Dec 3;105(23):235003. doi: 10.1103/PhysRevLett.105.235003. Epub 2010 Dec 2.
We present complete experimental characterization of the temporal shape of an intense ultrashort 200-TW laser pulse driving a laser wakefield. The phase of the pulse was uniquely measured by using (second-order) frequency-resolved optical gating. The pulses are asymmetrically compressed and exhibit a positive chirp consistent with the expected asymmetric self-phase-modulation due to photon acceleration or deceleration in a relativistic plasma wave. The measured pulse duration decreases linearly with increasing length and density of the plasma, in quantitative agreement with the intensity-dependent group velocity variation in the plasma wave.
我们对强超短 200TW 激光脉冲驱动激光尾流的时间形状进行了完整的实验特性描述。该脉冲的相位通过使用(二阶)频率分辨光闸来进行独特测量。这些脉冲是不对称压缩的,并表现出正啁啾,这与由于相对论等离子体波中的光子加速或减速而预期的不对称自相位调制一致。测量的脉冲持续时间随等离子体的长度和密度的增加呈线性减小,与等离子体波中的强度相关群速度变化定量一致。