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Optimal attosecond pulses generation from oscillating plasma surfaces driven at relativistic intensity

Plasma Physics 2021-09-24 v1 Optics

Abstract

The creation of attosecond pulses via laser-plasma interaction has been a subject of great scientific interest for more than three decades. This process is investigated by using particle-in-cell simulation with varying the plasma and laser parameters. The steepness of the density gradient at the plasma-vacuum interface is examined to see how this parameter affects the high-order harmonic generations and isolated-attosecond pulse creation. The optimal density gradient lengths LL are explored within the relativistic oscillating mirror mechanism. Although the ideal gradient lengths for the full width at half maximum and peak intensity of an isolated-attosecond pulse depend on the driving laser intensity independently, they are both found near LL=0.2λ\lambda for high laser intensities.

Keywords

Cite

@article{arxiv.2109.11412,
  title  = {Optimal attosecond pulses generation from oscillating plasma surfaces driven at relativistic intensity},
  author = {Lin Cheng and Zhixin Fan and Liguang Jiao and Aihua Liu},
  journal= {arXiv preprint arXiv:2109.11412},
  year   = {2021}
}

Comments

*:These authors contributed equally