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首页> 外文期刊>Journal of Physics. Condensed Matter >Current noise enhancement: channel mixing and possible nonequilibrium phonon backaction in atomic-scale Au junctions
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Current noise enhancement: channel mixing and possible nonequilibrium phonon backaction in atomic-scale Au junctions

机译:电流噪声增强:频道混合和可能非QuigibiBigibiRivium Shonon备份在原子级Au结中

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摘要

We report measurements of the bias dependence of the Fano factor in ensembles of atomic-scale Au junctions at 77 K. Previous measurements of shot noise at room temperature and low biases have found good agreement of the Fano factor with the expectations of the Landauer-Buttiker formalism, while enhanced Fano factors have been observed at biases of hundreds of mV (Chen et al 2014 Sci. Rep. 4 4221). We find even stronger enhancement of shot noise at 77 K with an 'excess' Fano factor up to ten times the low bias value. We discuss the observed ensemble Fano factor bias dependence in terms of candidate models. The results are most consistent with either a bias-dependent channel mixing picture or a model incorporating noise enhancement due to current-driven, nonequilibrium phonon populations, though a complete theoretical treatment of the latter in the ensemble average limit is needed.
机译:我们报告了在77K处的原子级Au结合中的Fano因子的偏置依赖性的测量。室温和低偏差下的射击噪声的测量结果发现了Fano因素与Landauer-extiker的期望吻合良好 形式主义,而在数百MV的偏见下已经观察到增强的Fano因子(Chen et al 2014 SCI。rep.4 4221)。 我们发现甚至更强大地提高了77 k的射击噪声,其中“过量”扇形因子高达10倍的低偏差值。 我们在候选模型方面讨论观察到的集合Fano因子偏见依赖性。 结果与偏置依赖的信道混合图像或集成噪声增强的模型是最符合的,因为目前驱动的,非QUAlon群体,尽管需要在整体平均极限中对后者的完全理论处理。

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