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Phys Rev Lett ; 110(1): 015003, 2013 Jan 04.
Article in English | MEDLINE | ID: mdl-23383801

ABSTRACT

Using electron bunches generated by laser wakefield acceleration as a probe, the temporal evolution of magnetic fields generated by a 4 × 10(19) W/cm(2) ultrashort (30 fs) laser pulse focused on solid density targets is studied experimentally. Magnetic field strengths of order B(0) ~ 10(4) T are observed expanding at close to the speed of light from the interaction point of a high-contrast laser pulse with a 10-µm-thick aluminum foil to a maximum diameter of ~1 mm. The field dynamics are shown to agree with particle-in-cell simulations.


Subject(s)
Electrons , Lasers , Magnetics , Models, Theoretical , Technology, Radiologic/methods , Particle Accelerators , Spectrum Analysis/methods
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