A numerical computer simulation using a charge sheet model is employed to investigate the beam‐plasma instability and Landau damping in a one‐dimensional, finite‐length, inhomogeneous plasma. The results confirm the theoretical predictions that the inhomogeneities in plasma density distribution reduce the spatial growth rate of the beam‐plasma instability and increase the Landau damping rate.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/70081/2/PFLDAS-15-1-171-1.pd
International audienceWe study beam-plasma interaction in the presence of random density fluctuation...
International audienceWe propose a new model that describes beam–plasma interaction in the presence ...
The large axial inhomogeneity of electron temperature due to nonlinear Landau damping of electrostat...
The electron and ion beam‐plasma instabilities in a one‐dimensional finite‐length system are studied...
International audienceWe consider one dimensional problem of beam-plasma interaction in strongly inh...
International audienceOn the basis of kinetic theory, the stability of an electron beam interacting ...
International audienceIn this work, we studied the effects of backgroundplasma density fluctuations ...
International audienceThe interaction of a beam propagating in a inhomogeneous solar wind plasma is ...
The stabilizing effects that a beam of longitudinally nonuniform density imposes on beam‐plasma inst...
We explore how inhomogeneity in the background plasma number density alters the growth of electrosta...
The details of the absorption of electromagnetic radiation in a plasma are important to the physics...
Previous theoretical considerations of electron beam relaxation in inhomogeneous plasmas have indica...
International audience[1] A numerical model for wave propagation in an unstable plasma with inhomoge...
International audienceWe study beam-plasma interaction in the presence of random density fluctuation...
International audienceWe propose a new model that describes beam–plasma interaction in the presence ...
The large axial inhomogeneity of electron temperature due to nonlinear Landau damping of electrostat...
The electron and ion beam‐plasma instabilities in a one‐dimensional finite‐length system are studied...
International audienceWe consider one dimensional problem of beam-plasma interaction in strongly inh...
International audienceOn the basis of kinetic theory, the stability of an electron beam interacting ...
International audienceIn this work, we studied the effects of backgroundplasma density fluctuations ...
International audienceThe interaction of a beam propagating in a inhomogeneous solar wind plasma is ...
The stabilizing effects that a beam of longitudinally nonuniform density imposes on beam‐plasma inst...
We explore how inhomogeneity in the background plasma number density alters the growth of electrosta...
The details of the absorption of electromagnetic radiation in a plasma are important to the physics...
Previous theoretical considerations of electron beam relaxation in inhomogeneous plasmas have indica...
International audience[1] A numerical model for wave propagation in an unstable plasma with inhomoge...
International audienceWe study beam-plasma interaction in the presence of random density fluctuation...
International audienceWe propose a new model that describes beam–plasma interaction in the presence ...
The large axial inhomogeneity of electron temperature due to nonlinear Landau damping of electrostat...