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Superpoissonian shot noise in organic magnetic tunnel junctions

机译:有机磁隧道结中的超泊松散粒噪声

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Organic molecules have recently revolutionized ways to create new spintronic devices. Despite intense studies, the statistics of tunneling electrons through organic barriers remains unclear. Here, we investigate conductance and shot noise in magnetic tunnel junctions with 3,4,9,10-perylene-teracarboxylic dianhydride (PTCDA) barriers a few nm thick. For junctions in the electron tunneling regime, with magnetoresistance ratios between 10% and 40%, we observe superpoissonian shot noise. The Fano factor exceeds in 1.5–2 times the maximum values reported for magnetic tunnel junctions with inorganic barriers, indicating spin dependent bunching in tunneling. We explain our main findings in terms of a model which includes tunneling through a two level (or multilevel) system, originated from interfacial bonds of the PTCDA molecules. Our results suggest that interfaces play an important role in the control of shot noise when electrons tunnel through organic barriers.
机译:有机分子最近已经彻底改变了创建新的自旋电子器件的方法。尽管进行了大量研究,但仍不清楚通过有机势垒隧穿电子的统计数据。在这里,我们研究了几纳米厚的3,4,9,10-per-四羧酸二酐(PTCDA)势垒在磁性隧道结中的电导和散粒噪声。对于电子隧穿状态的结,磁阻比在10%到40%之间,我们观察到超泊松散粒噪声。 Fano因子超过报道的具有无机势垒的磁性隧道结的最大值的1.5–2倍,表明隧道中自旋相关的聚集。我们用一个模型解释我们的主要发现,该模型包括通过PTCDA分子的界面键形成的两级(或多级)系统的隧穿。我们的结果表明,当电子穿过有机势垒时,界面在散粒噪声的控制中起着重要作用。

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