首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Coherent anti-Stokes Raman scattering (CARS) spectra, with resonance enhancement, of cytochrome c and vitamin B12 in dilute aqueous solution.
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Coherent anti-Stokes Raman scattering (CARS) spectra, with resonance enhancement, of cytochrome c and vitamin B12 in dilute aqueous solution.

机译:稀水溶液中细胞色素c和维生素B12的相干抗斯托克斯拉曼散射(CARS)光谱具有共振增强作用。

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摘要

Coherent anti-Stokes Raman scattering (CARS) spectra have been obtained for ferrocytochrome c and cyano cobalamin in aqueous solution at millimolar concentrations, using a pair of tunable dye lasers pumped by a pulsed nitrogen laser. Resonance enhancement was obtained by tuning the omega1 laser to the visible absorption bands of the samples. The spectral features correspond to those observed in the conventional resonance Raman spectra. It appears that CARS spectroscopy, with its advantageous fluorescence rejection, can be usefully applied to biological samples by exploiting resonance enhancement. While the background scattering from water is 10 times higher than that of benzene and other aromatic solvents, it is actually at the low end of the scale for most liquids. The anomalously low background of aromatic liquids is thought to result from competition by the unusually efficient stimulated Raman scattering which they display. Off-resonance spectra for both cobalamin and cytochrome c contain negative peaks, i.e., absorption bands in the background. These are interpreted as inverse Raman processes induced by the omega1 photons in the presence of the continuum provided by the background scattering. While both CARS and the inverse Raman effect are subject to resonance enhancement, the wavelength dependence of CARS is evidently steeper.
机译:使用脉冲氮激光泵浦的一对可调染料激光,已经获得了浓度为毫摩尔浓度的水溶液中铁细胞色素c和氰基钴胺素的相干抗斯托克斯拉曼散射(CARS)光谱。通过将omega1激光调谐到样品的可见吸收带可以增强共振。光谱特征对应于常规共振拉曼光谱中观察到的那些。看起来,具有有利的荧光排斥性的CARS光谱可以通过利用共振增强而有效地应用于生物样品。尽管水的本底散射比苯和其他芳族溶剂的本底散射高10倍,但实际上对于大多数液体来说,它的规模偏低。芳香族液体异常低的背景被认为是由于它们表现出的异常有效的受激拉曼散射的竞争所致。钴胺素和细胞色素c的非共振谱均包含负峰,即背景中的吸收带。这些被解释为由omega1光子在背景散射提供的连续体存在下诱发的拉曼逆过程。虽然CARS和拉曼反效应都受到共振增强,但CARS的波长依赖性显然更加陡峭。

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