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Facile collection of two-dimensional electronic spectra using femtosecond pulse-shaping technology

机译:使用飞秒脉冲整形技术轻松收集二维电子光谱

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摘要

This letter reports a straightforward means of collecting two-dimensional electronic (2D-E) spectra using optical tools common to many research groups involved in ultrafast spectroscopy and quantum control. In our method a femtosecond pulse shaper is used to generate a pair of phase stable collinear laser pulses which are then incident on a gas or liquid sample. The pulse pair is followed by an ultrashort probe pulse that is spectrally resolved. The delay between the collinear pulses is incremented using phase and amplitude shaping and a 2D-E spectrum is generated following Fourier transformation. The partially collinear beam geometry results in perfectly phased absorptive spectra without phase twist. Our approach is much simpler to implement than standard non-collinear beam geometries, which are challenging to phase stabilize and require complicated calibrations. Using pulse shaping, many new experiments are now also possible in both 2D-E spectroscopy and coherent control.
机译:这封信报告了使用许多超快光谱学和量子控制研究小组所共有的光学工具收集二维电子(2D-E)光谱的直接方法。在我们的方法中,飞秒脉冲整形器用于生成一对相位稳定的共线激光脉冲,然后将其入射到气体或液体样品上。脉冲对之后是频谱解析的超短探测脉冲。共线脉冲之间的延迟使用相位和幅度整形来增加,并在傅立叶变换之后生成2D-E频谱。部分共线的光束几何形状导致完美的相位吸收光谱而没有相位扭曲。与标准的非共线光束几何形状相比,我们的方法要容易实现得多,而标准的非共线光束几何形状对相位稳定提出了挑战,需要复杂的校准。使用脉冲整形,现在在2D-E光谱和相干控制中也可以进行许多新的实验。

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