article Open AccessTop 1% cited
Radiation pressure acceleration of thin foils with circularly polarized laser pulses
New Journal of Physics · 2008 · Vol. 10(1) · pp. 013021–013021
A. P. L. Robinson✉(Rutherford Appleton Laboratory)M. Zepf(Queen's University Belfast)S. Kar(Queen's University Belfast)Roger G. Evans(Rutherford Appleton Laboratory)C. Bellei(Imperial College London)
Abstract
A new regime is described for Radiation Pressure Acceleration of a thin foil by an intense laser beam of above 10^20 W/cm^2. Highly monoenergetic proton beams extending to GeV energies can be produced with very high efficiency using circularly polarized light. The proton beams have a very small divergence angle (less than 4 degrees). This new method allows the construction of ultra-compact proton and ion accelerators with ultra-short particle bursts.
Laser-Plasma Interactions and DiagnosticsHigh-pressure geophysics and materialsLaser-Matter Interactions and ApplicationsPhysicsRadiation pressureProtonFOIL methodRadiationAccelerationOpticsAtomic physicsElectronLaser
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Energetic proton generation in ultra-intense laser–solid interactions
Physics of Plasmas · 2001 · 1,677 citations
Ignition and high gain with ultrapowerful lasers*
Physics of Plasmas · 1994 · 2,985 citations
The physics basis for ignition using indirect-drive targets on the National Ignition Facility
Physics of Plasmas · 2004 · 1,803 citations
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