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首页> 外文期刊>The Journal of Chemical Physics >Four-center energy transfer and interaction pairs: Molecular quantum electrodynamics
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Four-center energy transfer and interaction pairs: Molecular quantum electrodynamics

机译:四中心能量转移和相互作用对:分子量子电动力学

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In the photophysics of complex macromolecules, resonance energy transfer is the key mechanism for the migration of electronic excitation. As the ability to engineer specific architectures for such molecules improves, environments for new forms of energy migration are being envisioned. Set in this context, one of our aims in this paper is to expound a new, general way of representing complex energy transfer systems, to obviate semantic and conceptual problems in addressing multicenter interactions. The theory of four-center energy transfer is developed within this framework, through the application of molecular quantum electrodynamics. A variety of mechanisms is identified by which four-center energy transfer may proceed, and a recently developed diagrammatic technique is employed to calculate relevant quantum amplitudes. Symmetry considerations are addressed, and key features of the ensuing rate equations are discussed with regard to their potential exploitation in novel photoactive devices. (C) 2002 American Institute of Physics. [References: 78]
机译:在复杂大分子的光物理中,共振能量转移是电子激发迁移的关键机制。随着针对此类分子设计特定架构的能力不断提高,人们正在构想出用于新形式能量迁移的环境。在这种背景下,我们的目标之一是阐明一种表示复杂能量传输系统的新通用方法,从而消除解决多中心相互作用时的语义和概念问题。通过应用分子量子电动力学,在此框架内发展了四中心能量转移的理论。可以识别出各种机制,通过这种机制可以进行四中心能量转移,并且采用了最近开发的图解技术来计算相关的量子振幅。解决了对称性的问题,并就其在新型光敏器件中的潜在开发问题讨论了速率方程的关键特征。 (C)2002美国物理研究所。 [参考:78]

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