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Telegraph noise in Markovian master equation for electron transport through molecular junctions

机译:通过分子连接的电子传输电子传输的电报噪声

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摘要

We present a theoretical approach to solve the Markovian master equation for quantum transport with stochastic telegraph noise. Considering probabilities as functionals of a random telegraph process, we use Novikov's functional method to convert the stochastic master equation to a set of deterministic differential equations. The equations are then solved in the Laplace space, and the expression for the probability vector averaged over the ensemble of realisations of the stochastic process is obtained. We apply the theory to study the manifestations of telegraph noise in the transport properties of molecular junctions. We consider the quantum electron transport in a resonant-level molecule as well as polaronic regime transport in a molecular junction with electron-vibration interaction. Published by AIP Publishing.
机译:我们提出了一种用随机电报噪声解决量子传输的马尔瓦维亚主方程的理论方法。 考虑概率作为随机电报过程的功能,我们使用NoviCov的功能方法将随机主方程转换为一组确定性微分方程。 然后,将等式求解在拉普拉斯空间中,获得对随机过程的实现的集合上平均的概率矢量的表达。 我们应用该理论来研究分子交叉点运输性能的电报噪声的表现。 我们考虑谐振水平分子中的量子电子传输,以及具有电子振动相互作用的分子结中的极性调节。 通过AIP发布发布。

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