arXiv · 2007.01064
Optical Shaping of Plasma Cavity for Controlled Laser Wakefield Acceleration
Abstract
Laser wakefield accelerators rely on relativistically moving micron-sized plasma cavities that provide extremely high electric field >100GV/m. Here, we demonstrate transverse shaping of the plasma cavity to produce controlled sub-GeV electron beams, adopting laser pulses with an axially rotatable ellipse-shaped focal spot. We showed the control capability on electron self-injection, charge, and transverse profile of the electron beam by rotating the focal spot. We observed that the effect of the elliptical focal spot was imprinted in the profiles of the electron beams and the electron energy increased, as compared to the case of a circular focal spot. We performed 3D particle-in-cell (PIC) simulations which reproduced the experimental results and revealed dynamics of a new asymmetric self-injection process. This simple scheme offers a novel control method on laser wakefield acceleration to produce tailored electron beams and x-rays for various applications.
Explore related subjects
Keep this discovery
Bobbili Sanyasi Rao, Myung Hoon Cho, Hyung Taek Kim, Jung Hun Shin, Kyung Hwan Oh, Jong Ho Jeon, Byung Ju Yoo, Seong Ha Cho, Seong Ku Lee, Chang Hee Nam. 2020-07-02. Optical Shaping of Plasma Cavity for Controlled Laser Wakefield Acceleration. https://doi.org/10.1103/physrevresearch.2.043319
Cite the original work for its findings. Save a collection to share your selection of sources.