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Optical Bloch equations for light harvesting complexes: pump probe spectra and saturation dynamics at high light intensity excitation

机译:用于光收集复合物的光学布洛中方程:泵探头探针和高光强度激励的饱和动力学

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This work presents the derivation of optical Bloch equations using the the correlation expansion method. The application of these equations for high-pulse intensities is illustrated by focusing on the pump-pulse spectra and the fluorescence quantum yield. Hence, the microscopic founded Bloch equations can be used for the description of high intensity optical experiments on light harvesting complex of photosystem II (LHC II). Results show that a reasonable agreement is attained between experimental and calculated data. Furthermore, results reveal that the Pauli blocking effects are the dominant process responsible for the observed optical behavior at high intensities.
机译:该工作介绍了使用相关性扩展方法的光学布洛中方程的推导。通过专注于泵浦脉冲光谱和荧光量子产量来说明这些方程对高脉冲强度的应用。因此,显微型创立的Bloch方程可用于对照相系统II(LHC II)的光收集复合物的高强度光学实验的描述。结果表明,实验和计算数据之间实现了合理的协议。此外,结果表明,保利阻断效果是负责高强度观察到的光学行为的主导过程。

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