Research paperTheoreticalInfluence of Aharonov-Bohm flux and dual gaps on electron scattering in graphene quantum dotsFatima Belokda, Ahmed Bouhlal, Ahmed JellalarXiv·2024·10.1088/1402-4896/ad9a24·arXiv:2409.13659AbstractWe study how the Aharonov-Bohm flux and dual gaps affect electron scattering in graphene quantum dots with electrostatic potential confinement. By deriving the energy spectrum and boundary-matched scattering coefficients, we analyze the radial reflected current, scattering amplitudes, and scattering efficiency as functions of incident energy, dot radius, dual gaps, and flux.Read more
Theoretical graphene quantum dot of radius r0 with Aharonov-Bohm flux, electrostatic potential, and dual gaps.3 propertiesSimulatedCStudied MaterialExpand
Research paperTheoreticalInfluence of Aharonov-Bohm flux and dual gaps on electron scattering in graphene quantum dotsFatima Belokda, Ahmed Bouhlal, Ahmed JellalarXiv·2024·10.1088/1402-4896/ad9a24·arXiv:2409.13659AbstractWe study how the Aharonov-Bohm flux and dual gaps affect electron scattering in graphene quantum dots with electrostatic potential confinement. By deriving the energy spectrum and boundary-matched scattering coefficients, we analyze the radial reflected current, scattering amplitudes, and scattering efficiency as functions of incident energy, dot radius, dual gaps, and flux.Read more
Theoretical graphene quantum dot of radius r0 with Aharonov-Bohm flux, electrostatic potential, and dual gaps.3 propertiesSimulatedCStudied MaterialExpand
Research paperTheoreticalInfluence of Aharonov-Bohm flux and dual gaps on electron scattering in graphene quantum dotsFatima Belokda, Ahmed Bouhlal, Ahmed JellalarXiv·2024·10.1088/1402-4896/ad9a24·arXiv:2409.13659AbstractWe study how the Aharonov-Bohm flux and dual gaps affect electron scattering in graphene quantum dots with electrostatic potential confinement. By deriving the energy spectrum and boundary-matched scattering coefficients, we analyze the radial reflected current, scattering amplitudes, and scattering efficiency as functions of incident energy, dot radius, dual gaps, and flux.Read more
Theoretical graphene quantum dot of radius r0 with Aharonov-Bohm flux, electrostatic potential, and dual gaps.3 propertiesSimulatedCStudied MaterialExpand
Research paperTheoreticalInfluence of Aharonov-Bohm flux and dual gaps on electron scattering in graphene quantum dotsFatima Belokda, Ahmed Bouhlal, Ahmed JellalarXiv·2024·10.1088/1402-4896/ad9a24·arXiv:2409.13659AbstractWe study how the Aharonov-Bohm flux and dual gaps affect electron scattering in graphene quantum dots with electrostatic potential confinement. By deriving the energy spectrum and boundary-matched scattering coefficients, we analyze the radial reflected current, scattering amplitudes, and scattering efficiency as functions of incident energy, dot radius, dual gaps, and flux.Read more
Theoretical graphene quantum dot of radius r0 with Aharonov-Bohm flux, electrostatic potential, and dual gaps.3 propertiesSimulatedCStudied MaterialExpand