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Cathode Surface Morphology Effects on Field Emission: Vacuum Breakdown Creation of Field Emitters

机译:阴极表面形态对场发射的影响:场发射体的真空击穿产生

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The effect of stainless steel cathode surface morphology on field electronic emission in high vacuum ( Pa) is studied. The surface rugosity is shown to affect the emission intensity; high-aspect ratio surface features lead to locally enhanced electric field, thereby increasing the field electronic emission. A breakdown in the vacuum, caused either by impact of charged dust particles or other impurities, or by overheating and vaporization of field emitters, can lead to cratering on the cathode surface. This cratering drastically changes the local surface rugosity, enhancing the local field and leads to greater emission intensity. Treatment of the cathode surface by glow discharge at higher pressure is known to reduce field emission by ionic bombardment and sputtering of emission sites; an image of such a glow-type discharge in the same apparatus used to study field emission is presented.
机译:研究了不锈钢阴极表面形态对高真空(Pa)场电子发射的影响。显示表面粗糙度会影响发射强度。高纵横比的表面特征导致局部增强的电场,从而增加了场电子发射。由带电灰尘颗粒或其他杂质的撞击或场发射器的过热和汽化引起的真空破坏可能会导致阴极表面出现缩孔。该缩孔极大地改变了局部表面的皱纹度,增强了局部场并导致更大的发射强度。已知通过在较高压力下通过辉光放电处理阴极表面可通过离子轰击和发射部位的溅射来减少场发射。在用于研究场发射的同一装置中,呈现了这种辉光型放电的图像。

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