Entanglement fidelity for electron-electron interaction in strongly coupled semiclassical plasma and under external fields
Abstract
This paper presents the effects of AB-flux field and electric field on electron-electron interaction, encircled by a strongly coupled semiclassical plasma. We found that weak external fields are required to perpetuate a low-energy elastic electron-electron interaction in a strongly coupled semiclassical plasma. The entanglement fidelity in the interaction process has been examined. We have used partial wave analysis to derive the entanglement fidelity. We found that for a weak electric field, the fidelity ratio for electron-electron interaction increase as projectile energy increase but remains constant or almost zero for a strong electric field. Our results provide an invaluable information on how the efficiency of entanglement fidelity for a low-energy elastic electron-electron interaction in a strongly coupled semiclassical plasma can be influenced by the presence of external fields.
Keywords
Cite
@article{arxiv.1806.09606,
title = {Entanglement fidelity for electron-electron interaction in strongly coupled semiclassical plasma and under external fields},
author = {B. J. Falaye and K. J. Oyewumi and O. A. Falaiye and C. A. Onate and O. J. Oluwadare and W. A. Yahya},
journal= {arXiv preprint arXiv:1806.09606},
year = {2019}
}