Su Jue, Xie Ruxin, Johnson Carey K, Hui Rongqing
Dept. Elect Eng. & Computer Sci., University of Kansas, Lawrence, KS, 66045, USA.
J Opt Soc Am B. 2013 Jun 1;30(6):1671-1682. doi: 10.1364/JOSAB.30.001671.
We demonstrate coherent Raman spectroscopy (CRS) using a tunable excitation source based on a single femtosecond fiber laser. The frequency difference between the pump and the Stokes pulses was generated by soliton self-frequency shifting (SSFS) in a nonlinear optical fiber. Spectra of C-H stretches of cyclohexane were measured simultaneously by stimulated Raman gain (SRG) and coherent anti-Stokes Raman scattering (CARS) and compared. We demonstrate the use of spectral focusing through pulse chirping to improve CRS spectral resolution. We analyze the impact of pulse stretching on the reduction of power efficiency for CARS and SRG. Due to chromatic dispersion in the fiber-optic system, the differential pulse delay is a function of Stokes wavelength. This differential delay has to be accounted for when performing spectroscopy in which the Stokes wavelength needs to be scanned. CARS and SRG signals were collected and displayed in two dimensions as a function of both the time delay between chirped pulses and the Stokes wavelength, and we demonstrate how to find the stimulated Raman spectrum from the two-dimensional plots. Strategies of system optimization consideration are discussed in terms of practical applications.
我们展示了一种基于单飞秒光纤激光器的可调谐激发源的相干拉曼光谱(CRS)。泵浦脉冲和斯托克斯脉冲之间的频率差是通过非线性光纤中的孤子自频移(SSFS)产生的。通过受激拉曼增益(SRG)和相干反斯托克斯拉曼散射(CARS)同时测量环己烷C-H伸缩振动的光谱并进行比较。我们展示了利用脉冲啁啾进行光谱聚焦以提高CRS光谱分辨率。我们分析了脉冲展宽对CARS和SRG功率效率降低的影响。由于光纤系统中的色散,差分脉冲延迟是斯托克斯波长的函数关系。在需要扫描斯托克斯波长的光谱测量中,必须考虑这种差分延迟。CARS和SRG信号作为啁啾脉冲之间的时间延迟和斯托克斯波长的函数在二维空间中采集和显示,并且我们展示了如何从二维图中找到受激拉曼光谱。从实际应用的角度讨论了系统优化考虑的策略。