Cross-focusing of two propagating ultrahigh power laser beams in homogeneous plasma (laser intensity I-L > 0(16) W/cm(2)) has been studied in the nonparaxial region. By expanding the eikonal and other relevant quantities up to the fourth power of r (radial distance), we observed that the focusing of the laser beams becomes fast in the nonparaxial region. The difference in focusing/ defocusing of the axial and off-axial rays leads to the formation of a splitted profile of laser beams in the plasma. A remarkable change is also observed in the amplitude of plasma wave excitation and particle acceleration in the nonparaxial region in comparison to the paraxial region. (c) 2008 American Institute of Physics.
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Photonics and Quantum Technologies Research School, Nuclear Science and Technology Research InstitutePhotonics and Quantum Technologies Research School, Nuclear Science and Technology Research Institute
M R JAFARI MILANI
S REZAEI
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Plasma and Fusion Research School, Nuclear Science and Technology ResearchPhotonics and Quantum Technologies Research School, Nuclear Science and Technology Research Institute
S REZAEI
M J JAFARI
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Plasma and Fusion Research School, Nuclear Science and Technology ResearchPhotonics and Quantum Technologies Research School, Nuclear Science and Technology Research Institute
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Nucl Sci & Technol Res Inst, Photon & Quantum Technol Res Sch, Tehran 14665678, IranNucl Sci & Technol Res Inst, Photon & Quantum Technol Res Sch, Tehran 14665678, Iran
Milani, M. R. Jafari
Rezaei, S.
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Nucl Sci & Technol Res Inst, Plasma & Fus Res Sch, Tehran 1439951113, IranNucl Sci & Technol Res Inst, Photon & Quantum Technol Res Sch, Tehran 14665678, Iran
Rezaei, S.
Jafari, M. J.
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Nucl Sci & Technol Res Inst, Plasma & Fus Res Sch, Tehran 1439951113, IranNucl Sci & Technol Res Inst, Photon & Quantum Technol Res Sch, Tehran 14665678, Iran