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Numerical study of the laser-tip coupling in surface plasmon assisted stacked-double-gate field emitter arrays

机译:表面等离子体激元辅助堆叠双栅场发射极阵列中激光尖端耦合的数值研究

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摘要

Recently, sub-wavelength-pitch stacked double-gate metal nanotip arrays have been proposed to realize high current, high brightness electron bunches for ultrabright cathodes for x-ray free-electron laser applications. With the proposed device structure, ultrafast field emission of photoexcited electrons is efficiently driven by vertical incident near infrared laser pulses, via near field coupling of the surface plasmon polariton resonance of the gate electrodes with the nanotip apex. In this work, in order to gain insight in the underlying physical processes, the authors report detailed numerical studies of the proposed device. The results indicate the importance of the interaction of the double-layer surface plasmon polariton, the position of the nanotip, as well as the incident angle of the near infrared laser pulses.
机译:近来,已经提出了亚波长间距堆叠的双栅极金属纳米尖端阵列,以实现用于x射线自由电子激光应用的超亮阴极的高电流,高亮度电子束。利用提出的器件结构,通过垂直入射的近红外激光脉冲,通过栅电极的表面等离激元极化共振与纳米尖端的近场耦合,有效地驱动了光激发电子的超快场发射。在这项工作中,为了深入了解潜在的物理过程,作者报告了拟议装置的详细数值研究。结果表明双层表面等离激元极化子相互作用,纳米尖端的位置以及近红外激光脉冲的入射角的重要性。

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