Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560012, India.
J Chem Phys. 2010 Jul 14;133(2):024505. doi: 10.1063/1.3464332.
Ultrafast Raman loss spectroscopy (URLS) enables one to obtain the vibrational structural information of molecular systems including fluorescent materials. URLS, a nonlinear process analog to stimulated Raman gain, involves a narrow bandwidth picosecond Raman pump pulse and a femtosecond broadband white light continuum. Under nonresonant condition, the Raman response appears as a negative (loss) signal, whereas, on resonance with the electronic transition the line shape changes from a negative to a positive through a dispersive form. The intensities observed and thus, the Franck-Condon activity (coordinate dependent), are sensitive to the wavelength of the white light corresponding to a particular Raman frequency with respect to the Raman pump pulse wavelength, i.e., there is a mode-dependent response in URLS.
超快拉曼损耗光谱学(URLS)可用于获取包括荧光材料在内的分子系统的振动结构信息。URLS 是一种类似于受激拉曼增益的非线性过程,涉及一个窄带宽皮秒拉曼泵浦脉冲和一个飞秒宽带白光连续体。在非共振条件下,拉曼响应表现为负(损耗)信号,而在与电子跃迁共振时,线形状从负变为正,通过色散形式。观察到的强度,因此,弗兰克-康登活性(坐标相关),对对应于特定拉曼频率的白光的波长敏感相对于拉曼泵浦脉冲波长,即,在 URLS 中有模式相关的响应。