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首页> 外文期刊>Bulletin of the Korean Chemical Society >Environment Dependent Coherence of a Short DNA Charge Transfer System
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Environment Dependent Coherence of a Short DNA Charge Transfer System

机译:短DNA电荷转移系统的环境相关一致性

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Relationship between charge transfer mechanism and quantum coherence has been investigated using a realtime quantum dynamics approach. In the on-the-fly filtered propagator functional path integral simulation, by separating paths that belong to different mechanisms and by integrating contributions of correspondingly sorted paths, it was possible to accurately obtain quantitative contribution of different transport mechanisms. For a 5`-GAGGG-3` DNA sequence, we analyze charge transfer processes quantitatively such that the governing mechanism alters from coherent to incoherent charge transfer with respect to the friction strength arising from dissipative environments. Although the short DNA sequence requires substantially strong dissipation for completely incoherent hopping transfer mechanism, even a weak system-environment interaction markedly destroys the coherence within the quantum mechanical system and the charge transfer dynamics becomes incoherent to some degree. Based on the forward-backward path deviation analysis, the coherence variation depending on the environment is investigated numerically.
机译:已经使用实时量子动力学方法研究了电荷转移机制和量子相干之间的关系。在动态过滤的传播器功能路径积分模拟中,通过分离属于不同机制的路径并整合相应排序路径的贡献,可以准确地获得不同运输机制的定量贡献。对于5`-GAGGG-3` DNA序列,我们定量分析了电荷转移过程,以使控制机制相对于由耗散环境引起的摩擦强度从相干电荷转移变为非相干电荷转移。尽管短的DNA序列需要为完全不相干的跳跃转移机制提供足够强的耗散性,但即使是弱的系统-环境相互作用也明显破坏了量子力学系统内的相干性,并且电荷转移动力学在某种程度上变得不相干。基于前向-后向路径偏差分析,数值研究了取决于环境的相干变化。

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