Postma S, van Rhijn A C W, Korterik J P, Gross P, Herek J L, Offerhaus H L
Optical Sciences Group, Department of Science and Technology, MESA Institute for Nanotechnology, University of Twente, 7500 AE Enschede, The Netherlands.
Opt Express. 2008 May 26;16(11):7985-96. doi: 10.1364/oe.16.007985.
By spectral phase shaping of both the pump and probe pulses in coherent anti-Stokes Raman scattering (CARS) spectroscopy we demonstrate the extraction of the frequencies, bandwidths and relative cross sections of vibrational lines. We employ a tunable broadband Ti:Sapphire laser synchronized to a ps-Nd:YVO mode locked laser. A high resolution spectral phase shaper allows for spectroscopy with a precision better than 1 cm(-1) in the high frequency region around 3000 cm(-1). We also demonstrate how new spectral phase shaping strategies can amplify the resonant features of isolated vibrations to such an extent that spectroscopy and microscopy can be done at high resolution, on the integrated spectral response without the need for a spectrograph.
通过在相干反斯托克斯拉曼散射(CARS)光谱中对泵浦脉冲和探测脉冲进行光谱相位整形,我们展示了对振动谱线的频率、带宽和相对截面的提取。我们使用了一台可调谐宽带钛宝石激光器,它与一台皮秒钕钇钒酸盐锁模激光器同步。一个高分辨率光谱相位整形器使得在3000 cm⁻¹左右的高频区域能够进行精度优于1 cm⁻¹的光谱分析。我们还展示了新的光谱相位整形策略如何能够将孤立振动的共振特征放大到这样的程度,即可以在无需光谱仪情况下,基于积分光谱响应以高分辨率进行光谱分析和显微镜观察。