首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Reduction of field emission dark current for high-field gradient electron gun by using a molybdenum cathode and titanium anode
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Reduction of field emission dark current for high-field gradient electron gun by using a molybdenum cathode and titanium anode

机译:通过使用钼阴极和钛阳极减少高场梯度电子枪的场发射暗电流

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Dark current measurements are performed for Mo and Ti electrodes and the results are analyzed to separate the primary field emission current from the total observed dark current. The analysis shows that Mo exhibits very low primary field emission current as a cathode, reaching 1 nA of primary field emission current at a DC field gradient of 170 MV/m. The equivalent measure for Ti is 124 MV/m, and Ti also exhibits a lower enhancement effect of dark current due to electron and ion bombardments of cathode and anode. An electrode configuration with Mo cathode and Ti anode is thus examined, and it is confirmed by experiments that a field gradient of as high as 130 MV/m for I nA total dark current is possible for an electrode gap of 0.5 mm and an effective cathode area of 7 mm(2). (C) 2004 Elsevier B.V. All rights reserved.
机译:对Mo和Ti电极执行暗电流测量,并对结果进行分析,以将主场发射电流与观察到的总暗电流分开。分析表明,Mo作为阴极显示的初级场发射电流非常低,在170 MV / m的DC场梯度下,初级场发射电流达到1 nA。 Ti的等效测量值为124 MV / m,并且由于阴极和阳极的电子和离子轰击,Ti还表现出较低的暗电流增强作用。因此检查了具有Mo阴极和Ti阳极的电极配置,并通过实验证实,对于0.5 mm的电极间隙和有效的阴极,对于I nA的总暗电流,场梯度高达130 MV / m面积7毫米(2)。 (C)2004 Elsevier B.V.保留所有权利。

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