Theoretical modeling of electron emission from graphene

被引:0
|
作者
Y. S. Ang
Shi-Jun Liang
L. K. Ang
机构
[1] Singapore University of Technology and Design,
来源
MRS Bulletin | 2017年 / 42卷
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摘要
The theories of thermionic emission and field emission (also known as the Richardson–Dushman [RD] and Fowler–Nordheim [FN] Laws, respectively) were formulated more than 80 years ago for bulk materials. In single-layer graphene, electrons mimic massless Dirac fermions and follow relativistic carrier dynamics. Thus, their behavior deviates significantly from the nonrelativistic electrons that reside in traditional bulk materials with a parabolic energy-momentum dispersion relation. In this article, we assert that due to linear energy dispersion, the traditional thermionic emission and field emission models are no longer valid for graphene and two-dimensional Dirac-like materials. We have proposed models that show better agreement with experimental data and also show a smooth transition to the traditional RD and FN Laws.
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页码:505 / 510
页数:5
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