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Low-energy electron transmission through high aspect ratio Al203 nanocapillaries

机译:通过高长径比Al2O3纳米毛细管的低能电子传输

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Electron transmission through insulating Al203 nanocapillaries of different diameters (40 and 270 nm) and 15 length has been investigated for low-energy electrons (2-120 eV). The total intensity of transmitted current weakly depends on the incident electron energy and tilt angle defined with respect to the capillary axis. On the other hand, the intensity of elastically transmitted electrons significantly varies with the alteration of electron energy and tilt angle. In addition, we measured an energy distribution of electrons transmitted both in the straightforward direction and at large tilt angle. The measured spectra show that inelastic processes dominate and, in particular, a large amount of low-energy electrons. These low-energy electrons can be either inelastically scattered projectiles or secondary electrons emitted within the capillaries. Furthermore, a change of the tilt angle appears to influence significantly only the intensity of the elastic transmission. The present results suggest a more complex nature of low-energy electron transport through insulating nanocapillaries than proposed for positive ions.
机译:对于低能电子(2-120 eV),已经研究了通过不同直径(40和270 nm)和15个长度的绝缘Al2O3纳米毛细管的电子传输。传输电流的总强度微弱地取决于入射电子能量和相对于毛细管轴定义的倾斜角。另一方面,弹性透射电子的强度随电子能量和倾斜角的变化而显着变化。另外,我们测量了在直接方向和大倾斜角下传输的电子的能量分布。测得的光谱表明,非弹性过程起主导作用,尤其是大量的低能电子。这些低能电子可以是非弹性散射的弹丸,也可以是在毛细管内发射的二次电子。此外,倾斜角的变化似乎仅显着影响弹性传递的强度。目前的结果表明,低能量电子通过绝缘纳米毛细管的传输比针对正离子的传输更为复杂。

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