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An efficient approach to the quantum dynamics and rates of processes induced by natural incoherent light

机译:天然不连光诱导的量子动态和过程率的有效方法

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摘要

In many important cases, the rate of excitation of a system embedded in an environment is significantly smaller than the internal system relaxation rates. An important example is that of light-induced processes under natural conditions, in which the system is excited by weak, incoherent (e.g., solar) radiation. Simulating the dynamics on the time scale of the excitation source can thus be computationally intractable. Here we describe a method for obtaining the dynamics of quantum systems without directly solving the master equation. We present an algorithm for the numerical implementation of this method and, as an example, use it to reconstruct the internal conversion dynamics of pyrazine excited by sunlight. Significantly, this approach also allows us to assess the role of quantum coherence on biological time scales, which is a topic of ongoing interest. Published by AIP Publishing.
机译:在许多重要的情况下,嵌入在环境中的系统的激发速率明显小于内部系统松弛率。 一个重要的例子是在自然条件下的光引起的过程,其中系统被弱,不连贯(例如,太阳能)辐射激发。 因此,模拟激励源的时间尺度的动态可以计算地难以解决。 在这里,我们描述了一种用于获得量子系统的动态的方法,而不直接求解主方程。 我们提出了一种用于该方法的数值实现的算法,作为示例,使用它来重建阳光激发吡嗪的内部转换动态。 值得注意的是,这种方法还允许我们评估量子一致性对生物时间尺度的作用,这是一种持续兴趣的主题。 通过AIP发布发布。

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