English

Low-Density Hydrodynamic Optical-Field-Ionized Plasma Channels Generated With An Axicon Lens

Plasma Physics 2019-04-30 v2

Abstract

We demonstrate optical guiding of high-intensity laser pulses in long, low density hydrodynamic optical-field-ionized (HOFI) plasma channels. An axicon lens is used to generate HOFI plasma channels with on-axis electron densities as low as ne(0)=1.5×1017cm3n_e(0) = 1.5\times 10^{17}\, \mathrm{cm}^{-3} and matched spot sizes in the range 20μmWM40μm 20 \mu \mathrm{m} \lesssim W_M \lesssim 40 \mu \mathrm{m}. Control of these channel parameters via adjustment of the initial cell pressure and the delay after the arrival of the channel-forming pulse is demonstrated. For laser pulses with a peak axial intensity of 4×1017Wcm24 \times 10^{17}\, \mathrm{W\,cm}^{-2}, highly reproducible, high-quality guiding over more than 14 Rayleigh ranges is achieved at a pulse repetition rate of 5 Hz, limited by the available channel-forming laser and vacuum pumping system. Plasma channels of this type would seem to be well suited to multi-GeV laser wakefield accelerators operating in the quasi-linear regime.

Keywords

Cite

@article{arxiv.1902.05596,
  title  = {Low-Density Hydrodynamic Optical-Field-Ionized Plasma Channels Generated With An Axicon Lens},
  author = {R. J. Shalloo and C. Arran and A. Picksley and A. von Boetticher and L. Corner and J. Holloway and G. Hine and J. Jonnerby and H. M. Milchberg and C. Thornton and R. Walczak and S. M. Hooker},
  journal= {arXiv preprint arXiv:1902.05596},
  year   = {2019}
}