首页> 外文期刊>Chemical Physics Letters >THEORY OF POLARIZED FLUORESCENCE AND ABSORPTION IN MOLECULAR COMPLEXES COMPRISING TWO CHROMOPHORES WITH NON-PARALLEL ABSORPTION AND EMISSION TRANSITION DIPOLE MOMENTS
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THEORY OF POLARIZED FLUORESCENCE AND ABSORPTION IN MOLECULAR COMPLEXES COMPRISING TWO CHROMOPHORES WITH NON-PARALLEL ABSORPTION AND EMISSION TRANSITION DIPOLE MOMENTS

机译:含两个非平行吸收和发射跃迁偶极矩的两个荧光体的分子复合物中的极化荧光和吸收理论

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This work concerns theoretical determination of the degree of fluorescence polarization and absorption anisotropy in double-chromophore complexes with non-parallel absorption and emission transition dipole moments. Specifically, the theory addresses the case in which energy may incoherently transfer within each complex between chromophores with broad and overlapped spectra. Inside each complex the chromophores are rigidly positioned and oriented relative to each other, whilst the complexes themselves are randomly distributed and oriented in space. The cases of steady-state and of Ei-pulse excitation are both considered. In general the results obtained apply not only to the specifically considered case of energy migration but more widely, for example to systems exhibiting fast trans-cis isomerization, electron or proton transfer, etc., either alone or in conjunction with conventional energy transfer. [References: 18]
机译:这项工作涉及理论上确定具有不平行的吸收和发射跃迁偶极矩的双发色团配合物的荧光偏振度和吸收各向异性。具体来说,该理论解决了以下情况:能量可能在具有宽光谱和重叠光谱的生色团之间的每个复合物中不相干地转移。在每个配合物中,生色团相对于彼此刚性定位和定向,而配合物本身在空间中随机分布和定向。都考虑了稳态和Ei脉冲激励的情况。通常,获得的结果不仅适用于特别考虑的能量迁移情况,而且更广泛地适用于例如单独或与常规能量转移结合表现出快速反式-顺式异构化,电子或质子转移等的系统。 [参考:18]

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