Chini Michael, Gilbertson Steve, Khan Sabih D, Chang Zenghu
JR Macdonald Laboratory, Department of Physics, Kansas State University, Manhattan 66502, Kansas, USA.
Opt Express. 2010 Jun 7;18(12):13006-16. doi: 10.1364/OE.18.013006.
Recent progress in sub-laser-cycle gating of high-order harmonic generation promises to push the limits on optical pulse durations below the atomic unit of time, 24 as, which corresponds to a bandwidth broader than 75 eV. However, the available techniques for attosecond pulse measurement are valid only for narrow-bandwidth spectra, due to one of the key approximations made in the phase retrieval. Here we report a new technique for characterizing attosecond pulses, whereby the spectral phase of the attosecond pulse is extracted from the oscillation component with the dressing laser frequency in the photoelectron spectrogram. This technique, termed PROOF (Phase Retrieval by Omega Oscillation Filtering), can be applied to characterizing attosecond pulses with ultrabroad bandwidths.
高次谐波产生的亚激光周期选通技术的最新进展有望突破光脉冲持续时间的极限,使其低于原子时间单位24阿秒,这对应着超过75电子伏特的带宽。然而,由于相位恢复中所做的一个关键近似,现有的阿秒脉冲测量技术仅适用于窄带光谱。在此,我们报告一种用于表征阿秒脉冲的新技术,通过该技术可从光电子能谱图中具有修饰激光频率的振荡分量提取阿秒脉冲的光谱相位。这种技术称为PROOF(通过ω振荡滤波进行相位恢复),可用于表征具有超宽带宽的阿秒脉冲。