Combined Effect of Chirp and Exponential Density Ramp on Relativistic Self-focusing of Hermite-Cosine-Gaussian Laser in Collisionless Cold Quantum Plasma
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy
Link
http://link.springer.com/article/10.1007/s13538-018-00624-7/fulltext.html
Reference23 articles.
1. H. Hora, New aspects for fusion energy using inertial confinement. Laser Part. Beams 25, 37 (2007)
2. P. Mulser, D. Bauer, Fast ignition of fusion pellets with superintense lasers: concepts, problems and prospectives. Laser Part. Beams 22, 5 (2004)
3. F. Winterberg, Lasers for inertial confinement fusion driven by high explosives. Laser Part. Beams 26, 127 (2008)
4. S. Lourenco, N. Kowarsch, W. Scheid, P.X. Wang, Acceleration of electrons and electromagnetic fields of highly intense laser pulses. Laser Part. Beams 28, 195 (2010)
5. H.Y. Niu, X.T. He, B. Qiao, C.T. Zhou, Enhanced resonant acceleration of electrons from intense laser interaction with density-attenuating plasma. Laser Part. Beams 26, 51 (2008)
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