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Self-injection threshold in self-guided laser wakefield accelerators
S. P.D. Mangles
*
, G. Genoud
, M. S. Bloom
, M. Burza
, Z. Najmudin
, A. Persson
, K. Svensson
, A. G.R. Thomas
, C. G. Wahlström
*
Corresponding author for this work
Not published at VTT
Imperial College London
Lund University
University of Michigan–Ann Arbor
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
68
Citations (Scopus)
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Keyphrases
Guided Self-help
100%
Laser Wakefield Acceleration
100%
Self-injection
100%
Pulsed Power
66%
Laser Pulse
33%
Bubble Size
33%
Shortest Distance
33%
Plasma Waves
33%
Pulse Compression
33%
Large Amplitude
33%
Injection Technique
33%
Wave Breaking
33%
Creative Commons
33%
Relativistic Electron Beam
33%
Wakefield Acceleration
33%
Quality Power
33%
Acceleration Experiment
33%
Self-focusing
33%
Focal Spot Quality
33%
Wakefield Accelerators
33%
INIS
pulses
100%
lasers
100%
injection
100%
wakefield accelerators
100%
acceleration
50%
density
25%
energy
25%
plasma
25%
operation
25%
power
25%
size
25%
electrons
25%
bubbles
25%
amplitudes
25%
distance
25%
compression
25%
trapping
25%
electron beams
25%
licenses
25%
relativistic range
25%
plasma waves
25%
Medicine and Dentistry
Pulse Rate
100%
Self Injection
100%