Probing plasma wakefields using electron bunches generated from a laser wakefield accelerator

We show experimental results of probing the electric field structure of plasma wakes by using femtosecond relativistic electron bunches generated from a laser wakefield accelerator. Snapshots of laser-driven linear wakes in plasmas with different densities and density gradients are captured. The spa...

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Veröffentlicht in:Plasma physics and controlled fusion 2018-03, Vol.60 (4), p.44013
Hauptverfasser: Zhang, C J, Wan, Y, Guo, B, Hua, J F, Pai, C-H, Li, F, Zhang, J, Ma, Y, Wu, Y P, Xu, X L, Mori, W B, Chu, H-H, Wang, J, Lu, W, Joshi, C
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Sprache:eng
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Zusammenfassung:We show experimental results of probing the electric field structure of plasma wakes by using femtosecond relativistic electron bunches generated from a laser wakefield accelerator. Snapshots of laser-driven linear wakes in plasmas with different densities and density gradients are captured. The spatiotemporal evolution of the wake in a plasma density up-ramp is recorded. Two parallel wakes driven by a laser with a main spot and sidelobes are identified in the experiment and reproduced in simulations. The capability of this new method for capturing the electron- and positron-driven wakes is also shown via 3D particle-in-cell simulations.
ISSN:0741-3335
1361-6587
DOI:10.1088/1361-6587/aaabfd