Examination of field emission from Lanthanum Hexaboride coated knife edge cathodes

M. Kirley, B. Novaković, Marcus J. Weber, N. Sule, J. Scharer, I. Knezevic, J. Booske
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引用次数: 2

Abstract

We report experiments and analysis of field emission from metallic knife-edge cathodes coated with thin film Lanthanum Hexaboride (LaB6), a low work function material (∼2.5 eV). The emission current density is found to depend sensitively on film properties, particularly the thickness of the LaB6 layer. Films thinner than approximately 10 nm greatly enhance the emitted current. However, cathodes coated with a thicker layer of LaB6 are observed to emit less current than the uncoated metallic cathode even though the bare metal cathode possesses a higher work function (> 4 eV). A hypothesis is proposed to explain this surprising experimental finding, and a computational model is developed. This simulation model incorporates field emission as well as solid state electron transport from the metal substrate through the LaB6 thin film, and is found to support the proposed hypothesis and agree with experimental observations.
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六硼化镧涂层刀口阴极场发射的检验
本文报道了涂有六硼化镧(LaB6)薄膜(一种低功函数材料(~ 2.5 eV))的金属刀口阴极的场发射实验和分析。发现发射电流密度敏感地依赖于膜的性质,特别是LaB6层的厚度。厚度小于约10纳米的薄膜大大增强了发射电流。然而,尽管裸金属阴极具有更高的功函数(> 4 eV),但观察到涂有较厚LaB6层的阴极比未涂有LaB6层的金属阴极发出的电流更小。提出了一个假设来解释这一令人惊讶的实验发现,并建立了一个计算模型。该模拟模型结合了场发射以及金属衬底通过LaB6薄膜的固态电子输运,支持了所提出的假设,并与实验观察结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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