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The role of Hurst exponent on cold field electron emission from conducting materials: from electric field distribution to Fowler-Nordheim plots

机译:赫斯特指数在导电材料的冷场电子发射中的作用:从电场分布到Fowler-Nordheim图

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摘要

This work considers the effects of the Hurst exponent (H) on the local electric field distribution and the slope of the Fowler-Nordheim (FN) plot when considering the cold field electron emission properties of rough Large-Area Conducting Field Emitter Surfaces (LACFESs). A LACFES is represented by a self-affine Weierstrass-Mandelbrot function in a given spatial direction. For 0.1 ≤ H < 0.5, the local electric field distribution exhibits two clear exponential regimes. Moreover, a scaling between the macroscopic current density () and the characteristic kernel current density (), , with an H-dependent exponent , has been found. This feature, which is less pronounced (but not absent) in the range where more smooth surfaces have been found (), is a consequence of the dependency between the area efficiency of emission of a LACFES and the macroscopic electric field, which is often neglected in the interpretation of cold field electron emission experiments. Considering the recent developments in orthodox field emission theory, we show that the exponent must be considered when calculating the slope characterization parameter (SCP) and thus provides a relevant method of more precisely extracting the characteristic field enhancement factor from the slope of the FN plot.
机译:当考虑粗糙的大面积导电场发射极表面(LACFESs)的冷场电子发射特性时,这项工作考虑了赫斯特指数(H)对局部电场分布和Fowler-Nordheim(FN)图的斜率的影响。 。 LACFES由给定空间方向上的自仿射Weierstrass-Mandelbrot函数表示。对于0.1≤H <0.5,局部电场分布表现出两个明显的指数形式。此外,已经发现具有H依赖指数的宏观电流密度()和特征核电流密度()之间的标度。该特征在发现较光滑表面的范围内不太明显(但不存在),是LACFES发射的面积效率与宏观电场之间相关性的结果,而宏观电场通常被忽略在解释冷场电子发射实验中。考虑到正统场发射理论的最新发展,我们表明在计算斜率表征参数(SCP)时必须考虑指数,从而提供了一种从FN图的斜率中更精确地提取特征场增强因子的相关方法。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    T. A. de Assis;

  • 作者单位
  • 年(卷),期 -1(5),-1
  • 年度 -1
  • 页码 10175
  • 总页数 13
  • 原文格式 PDF
  • 正文语种
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