Enhancement of the maximum proton energy by funnel-geometry target in laser–plasma interactions
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,Statistics and Probability
Reference25 articles.
1. Laser–plasma acceleration of quasi-monoenergetic protons from microstructured targets;Schwoerer;Nature,2006
2. Principles and applications of compact laser–plasma accelerators;Malka;Nat. Phys.,2008
3. Fast ignition by intense laser-accelerated proton beams;Roth;Phys. Rev. Lett.,2001
4. Development of a laser-driven proton accelerator for cancer therapy;Ma;Laser Phys.,2006
5. High-quality MeV protons from laser interaction with umbrellalike cavity target;Ma;Phys. Plasmas,2009
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1. Numerical Simulation Method for Three-Dimensional Flow Field of Multistage Axial Flow Compressor;2017 Second International Conference on Mechanical, Control and Computer Engineering (ICMCCE);2017-12
2. Proton Beam Generated by Multi-Lasers Interaction with Rear-Holed Target;Communications in Theoretical Physics;2017-03
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