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- W2078756181 abstract "Abstract A new algorithm is presented for the explicit calculation of the electromagnetic fields in 2D simulation plasmas. This paper describes a multi-fluid model for the simulation of laser plasma interaction. Our description includes a simple two-electron fluid model and the background ions in a laser target, as coupled fluid components moving relative to a fixed Eulerian mesh. The electrons become a perfect gas obeying the non relativistic Maxwell–Boltzmann distribution. Braginskii's expression is used. The magnetic field equation is integrated in time by the Lax–Wendroff modified scheme, a method that is known to be stable as long as the Courant–Friedrichs–Lewy condition is satisfied. The first approximation step (1) B m+1/2 =〈B m 〉+(〈v m 〉×B m )Δt/2 is followed by the full step (2) B m+1 =B m +(v m+1/2 ×B m+1/2 )Δt. With the explicit treatment of V × B in the fluid equation used, the matrix equation solved for the magnetic field reduces, from a 7-point coupling to a 5-point one to its nearest neighbors, in the direction z (B z ) , which leads to a 5-diagonal, sparse matrix that can be solved by both ADI an TDMA." @default.
- W2078756181 created "2016-06-24" @default.
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- W2078756181 date "2000-05-01" @default.
- W2078756181 modified "2023-09-27" @default.
- W2078756181 title "Explicit electromagnetic algorithm for 2D using a multi-fluid model in laser-produced plasmas" @default.
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- W2078756181 doi "https://doi.org/10.1016/s0010-4655(99)00521-4" @default.
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