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Charge transport and current fluctuations in bacteriorhodopsin based nanodevices

机译:基于细菌视紫红质的纳米器件中的电荷传输和电流波动

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We report on charge transport and current fluctuations in a single bacteriorhodpsin protein in a wide range of applied voltages covering direct and injection tunnelling regimes. The satisfactory agreement between theory and available experiments validates the physical plausibility of the model developed here. In particular, we predict a rather abrupt increase of the variance of current fluctuations in concomitance with that of the I–V characteristic. The sharp increase, for about five orders of magnitude of current variance is associated with the opening of low resistance paths responsible for the sharp increase of the I–V characteristics. A strong non-Gaussian behavior of the associated probability distribution function is further detected by numerical calculations.
机译:我们报告了单个细菌视紫红质蛋白在广泛的施加电压范围内的电荷传输和电流波动,这些电压涵盖了直接和注入隧穿机制。理论与可用实验之间的令人满意的一致性验证了此处开发的模型的物理合理性。特别是,我们预测电流波动的方差会突然增加,而IV特性也会随之增加。对于大约五个数量级的电流变化,急剧增加与导致I–V特性急剧增加的低电阻路径的打开有关。关联的概率分布函数的强非高斯行为可通过数值计算进一步检测到。

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