Physics of Plasmas · 2011 · 80 citations · 26 references
Multi-mev ElectronsX-ray SpectroscopyEngineeringPolycapillary OpticsOmega Ep LaserHigh-power LasersSynchrotron Radiation SourceX-ray ImagingLaser Plasma PhysicsX-ray TechnologyX-ray PulseRadiation ImagingRadiologyHealth SciencesPhysicsMedical ImagingParticle Beam PhysicsSynchrotron RadiationX-ray Free-electron LaserX-ray DiffractionRelativistic Laser-solid InteractionX-ray Optic
When high intensity (≥1019 W cm−2) laser light interacts with matter, multi-MeV electrons are produced. These electrons can be utilized to generate a MeV bremsstrahlung x-ray emission spectrum as they propagate into a high-Z solid target positioned behind the interaction area. The short duration (<10 ps) and the small diameter (<500 μm) of the x-ray pulse combined with the MeV x-ray spectrum offers an interesting alternative to conventional bremsstrahlung x-ray sources based on an electron accelerator used to radiograph dense, rapidly moving objects. In experiments at the Omega EP laser, a multi-MeV x-ray source is characterized consistently with number of independent diagnostics. An unfiltered x-ray dose of approximately 2 rad in air at 1 m and a source diameter of less than 350 μm are inferred. Radiography of a complex and high area density (up to 61 g/cm2) object is then performed with few hundred microns spatial resolution.
26
T. Tajima, J. M. Dawson · Physical Review Letters · 1979 · 4.5K citations
Engineering, Laser-plasma Interaction, Intense Electromagnetic Pulse +20
Absorption of ultra-intense laser pulses
S. C. Wilks, W. L. Kruer, M. Tabak et al. · Physical Review Letters · 1992 · 1.8K citations
Intense High-Energy Proton Beams from Petawatt-Laser Irradiation of Solids
R. A. Snavely, M. H. Key, S. P. Hatchett et al. · Physical Review Letters · 2000 · 1.7K citations
Not-so-resonant, resonant absorption
F. Brunel · Physical Review Letters · 1987 · 994 citations
Density Gradient Length, Resonant Absorption, Engineering +21