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用于稳定隧穿电子发射的电子轰击⟨110⟩取向钨尖端。

Electron-bombarded ⟨110⟩-oriented tungsten tips for stable tunneling electron emission.

作者信息

Yamada T K, Abe T, Nazriq N M K, Irisawa T

机构信息

Graduate School of Advanced Integration Science, Chiba University, 1-33 Yayoi-cho, Inage-ku, Chiba 263-8522, Japan.

出版信息

Rev Sci Instrum. 2016 Mar;87(3):033703. doi: 10.1063/1.4943074.

Abstract

A clean tungsten (W) tip apex with a robust atomic plane is required for producing a stable tunneling electron emission under strong electric fields. Because a tip apex fabricated from a wire by aqueous chemical etching is covered by impurity layers, heating treatment in ultra-high vacuum is experimentally known to be necessary. However, strong heating frequently melts the tip apex and causes unstable electron emissions. We investigated quantitatively the tip apex and found a useful method to prepare a tip with stable tunneling electron emissions by controlling electron-bombardment heating power. Careful characterizations of the tip structures were performed with combinations of using field emission I-V curves, scanning electron microscopy, X-ray diffraction (transmitted Debye-Scherrer and Laue) with micro-parabola capillary, field ion microscopy, and field emission microscopy. Tips were chemically etched from (1) polycrystalline W wires (grain size ∼1000 nm) and (2) long-time heated W wires (grain size larger than 1 mm). Heating by 10-40 W (10 s) was found to be good enough to remove oxide layers and produced stable electron emission; however, around 60 W (10 s) heating was threshold power to increase the tip radius, typically +10 ± 5 nm (onset of melting). Further, the grain size of ∼1000 nm was necessary to obtain a conical shape tip apex.

摘要

为了在强电场下产生稳定的隧道电子发射,需要一个具有坚固原子平面的干净钨(W)针尖顶端。由于通过水溶液化学蚀刻由金属丝制成的针尖顶端被杂质层覆盖,实验表明在超高真空中进行热处理是必要的。然而,强烈加热经常会使针尖顶端熔化并导致不稳定的电子发射。我们对针尖顶端进行了定量研究,并发现了一种通过控制电子轰击加热功率来制备具有稳定隧道电子发射的针尖的有用方法。通过结合使用场发射I-V曲线、扫描电子显微镜、带有微抛物线毛细管的X射线衍射(透射德拜-谢乐法和劳厄法)、场离子显微镜和场发射显微镜,对针尖结构进行了仔细表征。针尖是从(1)多晶钨丝(晶粒尺寸约1000 nm)和(2)长时间加热的钨丝(晶粒尺寸大于1 mm)化学蚀刻而成的。发现10 - 40 W(10 s)的加热足以去除氧化层并产生稳定的电子发射;然而,约60 W(10 s)的加热是增加针尖半径的阈值功率,通常增加10±5 nm(开始熔化)。此外,约1000 nm的晶粒尺寸对于获得锥形针尖顶端是必要的。

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