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A nanoscale vacuum-tube diode triggered by few-cycle laser pulses

Optics 2019-05-28 v1 Mesoscale and Nanoscale Physics

Abstract

We propose and demonstrate a nanoscale vacuum-tube diode triggered by few-cycle near-infrared laser pulses. It represents an ultrafast electronic device based on light fields, exploiting near-field optical enhancement at surfaces of two metal nanotips. The sharper of the two tips displays a stronger field-enhancement, resulting in larger photoemission yields at its surface. One laser pulse with a peak intensity of 4.7×10114.7\times 10^{11} W/cm2^2 triggers photoemission of 16{\sim }16 electrons from the sharper cathode tip, while emission from the blunter anode tip is suppressed by 1919 dB to 0.2{\sim }0.2 electrons per pulse. Thus, the laser-triggered current between two tips exhibit a rectifying behavior, in analogy to classical vacuum-tube diodes. According to the kinetic energy of the emitted electrons and the distance between tips, the total operation time of this laser-triggered nanoscale diode is estimated to be below 1 ps.

Keywords

Cite

@article{arxiv.1905.10712,
  title  = {A nanoscale vacuum-tube diode triggered by few-cycle laser pulses},
  author = {Takuya Higuchi and Lothar Maisenbacher and Andreas Liehl and Péter Dombi and Peter Hommelhoff},
  journal= {arXiv preprint arXiv:1905.10712},
  year   = {2019}
}

Comments

11 pages, 3 figures