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- W2029004017 abstract "Using a relativistic two-dimensional single particle code, the acceleration of electrons by a plasma wave, in the presence of a sheared magnetic field (a slab model for the azimuthal magnetic field) is studied. The plasma wave propagates along z-axis while its amplitude profile in the transverse x-direction is Gaussian, E=−∇φ, φ=A/ke−x2/r0′2 sin(ωt−kz+θ). The magnetic field is taken as Bs=−(Bs0x/r0)ŷe−x2/r02. The electrons that originate off the axis with finite velocity execute oscillatory trajectories in the x-z plane, due to the magnetic field. As they pass through the axial region, the plasma wave accelerates them. The electrons that originate at x0=2, z=0, with vx0=0.1, vz0=0.9, attain maximum energy Emax≈35 MeV for dimensionless plasma wave amplitude ap=eA/m0ωc≈0.6, b0=eBs0/m0ωc≈0.6 , where −e and m0 are the electronic charge and rest mass, respectively." @default.
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- W2029004017 date "2003-04-22" @default.
- W2029004017 modified "2023-10-01" @default.
- W2029004017 title "Electron acceleration by a plasma wave in a sheared magnetic field" @default.
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- W2029004017 doi "https://doi.org/10.1063/1.1566746" @default.
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