Kawashima H, Wefers M M, Nelson K A
Annu Rev Phys Chem. 1995;46:627-56. doi: 10.1146/annurev.pc.46.100195.003211.
A review is presented of femtosecond pulse-shaping methods and their application to spectroscopy of atoms, molecules, and condensed materials. Pulse shaping can be used to generate femtosecond pulse sequences and other optical waveforms whose time-dependent amplitude, phase, frequency, and polarization profiles are all specified precisely. The light-matter interaction mechanisms through which such waveforms can be used for optical control over molecular and material responses are discussed. Most of the spectroscopic experiments conducted to date that involve shaped femtosecond waveforms are reviewed. These have involved control over coherent electronic responses of atoms, small molecules, and multiple quantum wells and control over coherent molecular and lattice vibrations. A selective review is presented of theoretical predictions and qualitative discussions of optical control possibilities involving complex ultrafast waveforms.
本文综述了飞秒脉冲整形方法及其在原子、分子和凝聚态材料光谱学中的应用。脉冲整形可用于生成飞秒脉冲序列和其他光波形,其随时间变化的幅度、相位、频率和偏振分布都能被精确指定。文中讨论了通过这些波形可用于对分子和材料响应进行光学控制的光与物质相互作用机制。回顾了迄今为止进行的大多数涉及整形飞秒波形的光谱实验。这些实验包括对原子、小分子和多量子阱的相干电子响应的控制以及对相干分子和晶格振动的控制。本文还对涉及复杂超快波形的光学控制可能性的理论预测和定性讨论进行了选择性综述。