Publication | Open Access
Electronic Stopping Power in LiF from First Principles
182
Citations
28
References
2007
Year
Electrical EngineeringEngineeringPhysicsFirst PrinciplesApplied PhysicsEnergy TransferAtomic PhysicsTime-dependent Density-functional TheoryPhysical ChemistryTransport PhenomenaNon-perturbative QcdUnified Field TheoryCharge Carrier TransportIon EmissionCharge TransportElectrical InsulationElectron Physic
Using time-dependent density-functional theory we calculate from first principles the rate of energy transfer from a moving proton or antiproton to the electrons of an insulating material, LiF. The behavior of the electronic stopping power versus projectile velocity displays an effective threshold velocity of approximately 0.2 a.u. for the proton, consistent with recent experimental observations, and also for the antiproton. The calculated proton/antiproton stopping-power ratio is approximately 2.4 at velocities slightly above the threshold (v approximately 0.4 a.u.), as compared to the experimental value of 2.1. The projectile energy loss mechanism is observed to be extremely local.
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