arXiv Open Access 2020

Nonlinear wakefields and electron injection in cluster plasma

Marko Mayr Ben Spiers Ramy Aboushelbaya Robert Paddock James Sadler +4 lainnya
Lihat Sumber

Abstrak

Laser and beam driven wakefields promise orders of magnitude increases in electric field gradients for particle accelerators for future applications. Key areas to explore include the emittance properties of the generated beams and overcoming the dephasing limit in the plasma. In this paper, the first in-depth study of the self-injection mechanism into wakefield structures from non-homogeneous cluster plasmas is provided using high-resolution two dimensional particle-in-cell simulations. The clusters which are typical structures caused by ejection of gases from a high-pressure gas jet have a diameter much smaller than the laser wavelength. Conclusive evidence is provided for the underlying mechanism that leads to particle trapping, comparing uniform and cluster plasma cases. The accelerated electron beam properties are found to be tunable by changing the cluster parameters. The mechanism explains enhanced beam charge paired with large transverse momentum and energy which has implications for the betatron x-ray flux. Finally, the impact of clusters on the high-power laser propagation behavior is discussed.

Penulis (9)

M

Marko Mayr

B

Ben Spiers

R

Ramy Aboushelbaya

R

Robert Paddock

J

James Sadler

C

Charles Sillett

R

Robin Wang

K

Karl Krushelnick

P

Peter Norreys

Format Sitasi

Mayr, M., Spiers, B., Aboushelbaya, R., Paddock, R., Sadler, J., Sillett, C. et al. (2020). Nonlinear wakefields and electron injection in cluster plasma. https://arxiv.org/abs/2007.05422

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2020
Bahasa
en
Sumber Database
arXiv
Akses
Open Access ✓