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首页> 外文期刊>The Journal of Chemical Physics >Quantum pathways for resonance energy transfer
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Quantum pathways for resonance energy transfer

机译:共振能量转移的量子途径

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A quantum electrodynamical calculation is presented that focuses individually on the two quantum pathways or time orderings for resonance energy transfer.Conventional mathematical procedures necessitate summing the quantum pathway amplitudes at an early stage in the calculations.Here it is shown,by the adoption of a different strategy that allows deferral of the amplitude summation,that it is possible to elicit key information regarding the relative significance of the two pathways and their distinct distance dependences.A special function integration method delivers equations that also afford new insights into the behavior of virtual photons.It is explicitly demonstrated that both time-ordered pathways are effective at short distances,while in the far field the dissipation of virtual traits favors one pathway.Hitherto unknown features are exhibited in the oblique asymptotic behavior of the time-ordered contributions and their quantum interference.Consistency with the rate equations of resonance energy transfer is demonstrated and results are presented graphically.
机译:提出了一种量子电动力学计算方法,该算法分别关注共振能量转移的两个量子路径或时间顺序。常规的数学程序需要在计算的早期阶段对量子路径的振幅求和。允许延迟振幅求和的策略,可以得出关于两条路径的相对重要性及其不同的距离依赖性的关键信息。一种特殊的函数积分方法提供的方程式也为虚拟光子的行为提供了新的见解。明确表明,这两种时间有序的路径在短距离上都是有效的,而在远距离场中,虚拟特征的耗散有利于一条路径。时间有序的贡献的斜渐近行为及其量子干扰显示出迄今未知的特征。与速率方程的一致性演示了共振能量转移,并以图形方式显示了结果。

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