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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Carotenoid deactivation in an artificial light-harvesting complex via a vibrationally hot ground state
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Carotenoid deactivation in an artificial light-harvesting complex via a vibrationally hot ground state

机译:经由振动热基态的人工采光复合物中的类胡萝卜素失活

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摘要

Ultrafast relaxation of a carotenoid in an artificial light harvesting complex has been studied by transient absorption spectroscopy. The transient signal amplitudes at several wavelengths as well as the amplitudes of the underlying species associated spectra (SAS) are analysed for several excitation energies ranging over more than two orders of magnitude (10 nJ/pulse LIP to 3000 nJ/pulse). Our analysis shows that the contribution from the so-called S* signal on the long-wavelength side of the first allowed S-0 -> S-2 transition has a markedly different excitation energy dependence and saturation behaviour than the electronic excited state S-1. These observations are modelled and explained in terms of a two-photon excitation of a vibrationally hot ground state via an impulsive stimulated Raman scattering (ISRS). The experimental observations of the varying pulse energy dependencies of different excited state species are supported by an analysis based on a density-matrix formalism.
机译:瞬态吸收光谱法已经研究了类胡萝卜素在人造采光复合物中的超快弛豫。分析了几种波长范围内超过两个数量级(10 nJ /脉冲LIP至3000 nJ /脉冲)的几种激发能,分析了几种波长下的瞬态信号幅度以及相关物种的频谱。我们的分析表明,在第一个允许的S-0-> S-2跃迁的长波侧,所谓的S *信号的贡献与电子激发态S-有明显不同的激发能量依赖性和饱和行为。 1。这些观察是通过脉冲受激拉曼散射(ISRS)对振动热基态的双光子激发进行建模和解释的。基于密度矩阵形式主义的分析支持了不同激发态物质对脉冲能量依赖性变化的实验观察。

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