Abstract

Stable operation of a laser-plasma accelerator near the threshold for electron self-injection in the blowout regime has been demonstrated with 25–60 TW, 30 fs laser pulses focused into a 3–4 millimeter length gas jet. Nearly Gaussian shape and high nanosecond contrast of the focused pulse appear to be critically important for controllable, tunable generation of 250–430 MeV electron bunches with a low-energy spread, ∼10pC charge, a few-mrad divergence and pointing stability, and a vanishingly small low-energy background. The physical nature of the near-threshold behavior is examined using three-dimensional particle-in-cell simulations. Simulations indicate that properly locating the nonlinear focus of the laser pulse within the plasma suppresses continuous injection, thus reducing the low-energy tail of the electron beam.

Details

Title
Stable, tunable, quasimonoenergetic electron beams produced in a laser wakefield near the threshold for self-injection
Author
Banerjee, S; Kalmykov, S Y; Powers, N D; Golovin, G; Ramanathan, V; Cunningham, N J; Brown, K J; Chen, S; Ghebregziabher, I; Shadwick, B A; Umstadter, D P
Section
ARTICLES
Publication year
2013
Publication date
Mar 2013
Publisher
American Physical Society
e-ISSN
10984402
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2551279431
Copyright
© 2013. This work is licensed under http://creativecommons.org/licenses/by/3.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License.