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Scaling for quantum tunneling current in nano- and subnano-scale plasmonic junctions

机译:缩放纳米和亚纳米等离子结中的量子隧穿电流

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摘要

When two conductors are separated by a sufficiently thin insulator, electrical current can flow between them by quantum tunneling. This paper presents a self-consistent model of tunneling current in a nano- and subnano-meter metal-insulator-metal plasmonic junction, by including the effects of space charge and exchange correlation potential. It is found that the J-V curve of the junction may be divided into three regimes: direct tunneling, field emission, and space-charge-limited regime. In general, the space charge inside the insulator reduces current transfer across the junction, whereas the exchange-correlation potential promotes current transfer. It is shown that these effects may modify the current density by orders of magnitude from the widely used Simmons’ formula, which is only accurate for a limited parameter space (insulator thickness > 1 nm and barrier height > 3 eV) in the direct tunneling regime. The proposed self-consistent model may provide a more accurate evaluation of the tunneling current in the other regimes. The effects of anode emission and material properties (i.e. work function of the electrodes, electron affinity and permittivity of the insulator) are examined in detail in various regimes. Our simple model and the general scaling for tunneling current may provide insights to new regimes of quantum plasmonics.
机译:当两个导体被足够薄的绝缘体隔开时,电流可以通过量子隧穿在它们之间流动。通过包括空间电荷和交换相关势的影响,本文提出了一个在纳米和亚纳米金属-绝缘体-金属等离子体激元结中隧穿电流的自洽模型。发现该结的J-V曲线可分为三种状态:直接隧穿,场发射和空间电荷受限状态。通常,绝缘子内部的空间电荷会减少跨结的电流传输,而交换相关电位会促进电流传输。结果表明,这些效应可能会根据广泛使用的西蒙斯公式将电流密度改变几个数量级,该公式仅在直接隧穿条件下对有限的参数空间(绝缘体厚度> 1 nm和势垒高度> 3 eV)准确。所提出的自洽模型可以在其他情况下提供对隧道电流的更准确评估。在各种方案中详细检查了阳极发射和材料特性(即电极的功函数,电子亲和力和绝缘体的介电常数)的影响。我们的简单模型和隧穿电流的一般缩放可以为量子等离子体激元的新机制提供见解。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    Peng Zhang;

  • 作者单位
  • 年(卷),期 -1(5),-1
  • 年度 -1
  • 页码 9826
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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