Publication | Closed Access
Electron transport in the presence of a Coulomb field
67
Citations
42
References
1990
Year
Transport BehaviorCharge ExcitationsEngineeringPhysicsElectron SpectroscopyMonte CarloApplied PhysicsAtomic PhysicsParticle MethodTransport PhenomenaElectron TransportElectron DiffractionCharge Carrier TransportMaster EquationCharge TransportElectron Physic
We analyze the modifications of the transport behavior of electrons in dense media due to the presence of a strong Coulomb field generated by an ion moving initially in close phase-space correlation with the electrons. These modifications play a profound role in convoy electron emission in ion-solid collisions. The transport behavior is studied within the framework of a classical phase-space master equation. The nonseparable master equation is solved numerically using test-particle discretization and Monte Carlo sampling. In the limit of vanishing Coulomb forces the master equation becomes separable and can be reduced to standard one-dimensional kinetic equations for free-electron transport that can be solved exactly. The comparison to free-electron transport is used to gauge both the reliability of test-particle discretization and the significance of Coulomb distortion of the distribution functions. Applications to convoy-electron emission are discussed.
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