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首页> 外文期刊>Applied Physics Letters >Electron emission mechanism of diamond characterized using combined x-ray photoelectron spectroscopy/uItraviolet photoelectron spectroscopy/field emission spectroscopy system
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Electron emission mechanism of diamond characterized using combined x-ray photoelectron spectroscopy/uItraviolet photoelectron spectroscopy/field emission spectroscopy system

机译:结合X射线光电子能谱/紫外光电子能谱/场发射能谱系统表征金刚石的电子发射机理

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摘要

Clarification on electron emission mechanism of diamond is one essential approach to realize the clear vision of vacuum nanoelectronics. Electric field of less than 5 V/μm is enough to extract electrons from diamond, whereas field of one to two orders of magnitude higher is needed to extract electrons from conventional metal emitter tips. Diamond has various advantages as an electron emitter in addition to the low-threshold voltage, such as negative electron affinity and high thermal conductivity. The difficulty in clarification of electron emission mechanism is the factor preventing diamond from being used in a practical way. In this study, combined spectroscopy of x-ray photoelectron spectroscopy/ultraviolet photoelectron spectroscopy/field emission spectroscopy was performed to characterize the electron emission mechanism of diamond. The results indicated the first successful observation of applied voltage dependence on the origin of field-emitted electrons.
机译:阐明金刚石的电子发射机理是实现真空纳米电子学清晰视野的一种基本方法。小于5 V /μm的电场足以从金刚石中提取电子,而从常规金属发射器尖端中提取电子则需要高一到两个数量级的电场。除了低阈值电压外,金刚石还具有作为电子发射器的各种优势,例如负电子亲和力和高导热性。澄清电子发射机理的困难是阻止金刚石以实际方式使用的因素。在这项研究中,X射线光电子能谱/紫外光电子能谱/场发射能谱的组合能谱被用来表征金刚石的电子发射机理。结果表明首次成功观察到施加的电压依赖于场发射电子的起源。

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