Overview of Electron Emission Laws from 2D Materials

L. Ang, Y. Ang, Yi-man Luo, Bee Hong Tiang
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Abstract

In this paper, we present an overview of the novel scaling laws of thermionic emission (TE), field emission (FE) and photoemission (PE) for two-dimensional (2D) materials. For these emerging materials, we express the emission models in the form of $\ln(J/K^{\beta})\propto 1/K$, where J is the emission current density, $K$ is temperature (T) for TE and $K$ is dc or optically field for FE and PE. Here, the scaling is $\beta = 3/2$ and $\beta = 1$ for electron emission in lateral (or edge) and vertical (or surface) direction, respectively, which is different from the traditional scaling of $\beta = 2$ for bulk 3D materials.
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二维材料的电子发射规律综述
本文综述了二维(2D)材料的热离子发射(TE)、场发射(FE)和光发射(PE)的新型标度规律。对于这些新兴材料,我们以$\ln(J/K^{\beta})\propto 1/K$的形式表示发射模型,其中J为发射电流密度,$K$为TE的温度(T), $K$为FE和PE的直流或光场。在这里,电子发射在横向(或边缘)和垂直(或表面)方向的标度分别为$\beta = 3/2$和$\beta = 1$,这与传统的块体三维材料标度为$\beta = 2$不同。
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