Near-100 MeV protons via a laser-driven transparency-enhanced hybrid acceleration scheme
A. Higginson(University of Strathclyde), P. McKenna(University of Strathclyde), Wenqing Wei(Shanghai Jiao Tong University), D. Neely(Rutherford Appleton Laboratory), R. Capdessus(University of Strathclyde), R. J. Clarke(Rutherford Appleton Laboratory), R. J. Gray(University of Strathclyde), M. Borghesi(University of Pisa), S. R. Mirfayzi(Tokamak Energy (United Kingdom)), R. J. Dance(University of Strathclyde), Sarah Hawkes, N. M. H. Butler(University of Strathclyde), M. King(University of Strathclyde), Philip Martin(Queen's University Belfast), J. S. Green(Rutherford Appleton Laboratory), R. Wilson(University of Strathclyde), S. Kar(Queen's University Belfast), C. Armstrong(Rutherford Appleton Laboratory), S. D. R. Williamson(University of Strathclyde), Xiaohui Yuan(Shanghai Jiao Tong University)
Cited by 449
Related Papers
Highly Efficient Relativistic-Ion Generation in the Laser-Piston Regime
|Physical Review Letters|2004|1k
Petawatt and exawatt class lasers worldwide
|High Power Laser Science and Engineering|2019|959
Disrupting gender norms in health systems: making the case for change
|The Lancet|2019|444
Fast Ion Generation by High-Intensity Laser Irradiation of Solid Targets and Applications
|Fusion Science & Technology|2006|420
Electric field detection in laser-plasma interaction experiments via the proton imaging technique
|Physics of Plasmas|2002|416