Ma Xiaonan, Dostál Jakub, Brixner Tobias
Opt Express. 2016 Sep 5;24(18):20781-91. doi: 10.1364/OE.24.020781.
We demonstrate noncollinear coherent two-dimensional (2D) electronic spectroscopy for which broadband pulses are generated in an argon-filled hollow-core fiber pumped by a 1-kHz Ti:Sapphire laser. Compression is achieved to 7 fs duration (TG-FROG) using dispersive mirrors. The hollow fiber provides a clean spatial profile and smooth spectral shape in the 500-700 nm region. The diffractive-optic-based design of the 2D spectrometer avoids directional filtering distortions and temporal broadening from time smearing. For demonstration we record data of cresyl-violet perchlorate in ethanol and use phasing to obtain broadband absorptive 2D spectra. The resulting quantum beating as a function of population time is consistent with literature data.
我们展示了非共线相干二维(2D)电子光谱,其中宽带脉冲是在由1 kHz钛宝石激光器泵浦的充氩空心光纤中产生的。使用色散镜将脉冲压缩至7 fs持续时间(TG-FROG)。空心光纤在500-700 nm区域提供了清晰的空间轮廓和平滑的光谱形状。二维光谱仪基于衍射光学的设计避免了方向滤波失真和时间拖尾导致的时间展宽。为了进行演示,我们记录了乙醇中高氯酸甲酚紫的数据,并使用相位技术获得宽带吸收二维光谱。所得的作为布居时间函数的量子拍频与文献数据一致。