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Field electron emission characteristics and physical mechanism of individual single-layer graphene

机译:单层石墨烯的场电子发射特性及物理机理

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Due to its difficulty, experimental measurement of field emission from a single-layer graphene has not been reported, although field emission from a two-dimensional (2D) regime has been an attractive topic. The open surface and sharp edge of graphene are beneficial for field electron emission. A 2D geometrical effect, such as massless Dirac fermion, can lead to new mechanisms in field emission. Here, we report our findings from in situ field electron emission characterization on an individual singe-layer graphene and the understanding of the related mechanism. The measurement of field emission from the edges was done using a microanode probe equipped in a scanning electron microscope. We show that repeatable stable field emission current can be obtained after a careful conditioning process. This enables us to examine experimentally the typical features of the field emission from a 2D regime. We plot current versus applied field data, respectively, in ln(I/E~(3/2)) ~ 1/E and ln(I/E~3) ~ 1/E~2 coordinates, which have recently been proposed for field emission from graphene in high- and low-field regimes. It is observed that the plots all exhibit an upward bending feature, revealing that the field emission processes undergo from a low- to high-field transition. We discuss with theoretical analysis the physical mechanism responsible for the new phenomena.
机译:由于其困难,尽管来自二维(2D)状态的场发射一直是一个吸引人的话题,但尚未报道过单层石墨烯场发射的实验测量。石墨烯的开放表面和锋利边缘有利于场电子发射。二维几何效应(例如无质量的狄拉克费米子)可导致场发射的新机制。在这里,我们报告了我们对单个单层石墨烯的原位电子发射表征以及对相关机理的理解所得出的发现。使用装备在扫描电子显微镜中的微阳极探针完成从边缘的场发射的测量。我们表明,经过仔细的调节过程,可以获得可重复的稳定场发射电流。这使我们能够通过实验检查2D态场发射的典型特征。我们分别在ln(I / E〜(3/2))〜1 / E和ln(I / E〜3)〜1 / E〜2坐标中绘制电流与应用场数据的关系,这些坐标最近被提出用于石墨烯在高场和低场条件下的场发射。可以看到,这些图都表现出向上弯曲的特征,表明场发射过程经历了从低场到高场的过渡。我们通过理论分析来讨论造成新现象的物理机制。

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