Opt Express. 2022 Dec 5;30(25):45043-45053. doi: 10.1364/OE.474085.
The cascaded stimulated Raman scattering (SRS) of an aqueous sodium sulfate solution was investigated as well as the generation of the crossing-pump effect. With the introduction of dual sample cells, the first-order Stokes of the O-H stretching vibrational mode was able to act as the pump light to excite the Stokes of the S-O stretching vibrational mode, and a new Raman peak was obtained at 4423 cm. The dual sample cell device not only lowered the SRS threshold, but also enhanced the four-wave mixing (FWM) process. Compared to the input laser of 7 ns/pulse, the first-order Stokes of O-H was compressed to a pulse width of 413 ps after passing through the dual sample cells. The SRS of aqueous sodium sulfate solution covered an ultrabroad wavelength ranging from 441 nm to 720 nm (a Raman shift ranging from -3859 cm to 4923 cm). The cone-shaped launch ring of the FWM process was also recorded. This work provides a reference for the establishment of laser frequency conversion devices using an aqueous sodium sulfate solution as the Raman medium.
研究了水合硫酸钠溶液的级联受激拉曼散射(SRS)以及交变相泵浦效应的产生。通过引入双样品池,O-H 伸缩振动模式的一级斯托克斯光可以作为泵浦光来激发 S-O 伸缩振动模式的斯托克斯光,从而在 4423 cm 处获得新的拉曼峰。双样品池装置不仅降低了 SRS 的阈值,还增强了四波混频(FWM)过程。与 7 ns/脉冲的输入激光相比,O-H 的一级斯托克斯光通过双样品池后被压缩到 413 ps 的脉冲宽度。水合硫酸钠溶液的 SRS 覆盖了从 441nm 到 720nm 的超宽带波长范围(拉曼位移范围从-3859cm 到 4923cm)。还记录了 FWM 过程的锥形发射环。这项工作为建立以水合硫酸钠溶液作为拉曼介质的激光变频装置提供了参考。