English

Low emittance electron beam generation from a laser wakefield accelerator using two laser pulses with different wavelengths

Accelerator Physics 2015-06-18 v1 Plasma Physics

Abstract

Ionization injection triggered by short wavelength laser pulses inside a nonlinear wakefield driven by a longer wavelength laser is examined via multi-dimensional particle-in-cell simulations. We find that very bright electron beams can be generated through this two-color scheme in either collinear propagating or transverse colliding geometry. For a fixed laser intensity II, lasers with longer/shorter wavelength λ\lambda have larger/smaller ponderomotive potential (Iλ2\propto I \lambda^2). The two color scheme utilizes this property to separate the injection process from the wakefield excitation process. Very strong wakes can be generated at relatively low laser intensities by using a longer wavelength laser driver (e.g. a 10\micro\meter10 \micro\meter CO2_2 laser) due to its very large ponderomotive potential. On the other hand, short wavelength laser can produce electrons with very small residual momenta (pa0Iλp_\perp\sim a_0\sim \sqrt{I}\lambda) inside the wake, leading to electron beams with very small normalized emittances (tens of \nano\meter\nano\meter). Using particle-in-cell simulations we show that a 10\femto\second\sim10 \femto\second electron beam with 4\pico\coulomb\sim4 \pico\coulomb of charge and a normalized emittance of 50\nano\meter\sim 50 \nano\meter can be generated by combining a 10 \micro\meter\micro\meter driving laser with a 400 \nano\meter\nano\meter injection laser, which is an improvement of more than one order of magnitude compared to the typical results obtained when a single wavelength laser used for both the wake formation and ionization injection.

Keywords

Cite

@article{arxiv.1402.5322,
  title  = {Low emittance electron beam generation from a laser wakefield accelerator using two laser pulses with different wavelengths},
  author = {X. L. Xu and Y. P. Wu and C. J. Zhang and F. Li and Y. Wan and J. F. Hua and C. -H. Pai and W. Lu and P. Yu and C. Joshi and W. B. Mori},
  journal= {arXiv preprint arXiv:1402.5322},
  year   = {2015}
}

Comments

18 pages (one column), 7 figures

R2 v1 2026-06-22T03:13:12.912Z