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20212026
most citedStrain effect on Goos-Hänchen shifts and group delay time in gapped graphene barrier

8 citations · 24 across the 6 of their papers we have counts for

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cond-mat.mes-hall2026

Magnetic control of Goos-Hänchen shifts and group delay time in monolayer WSe

Youssef Fattasse, Rachid El Aitouni, Miloud Mekkaoui +3

We study the influence of an external magnetic field on the Goos-Hänchen (GH) shift and the group delay time (GDT) in monolayer WSe in the presence of a magnetic barrier. The t…

cond-mat.mes-hall2026

Tunable Goos--Hänchen shifts and group delay time in single-barrier silicene

Youssef Fattasse, Hocine Bahlouli, Clarence Cortes +2

We investigate the Goos--Hänchen (GH) shifts and group delay time of Dirac fermions traversing a rectangular electrostatic potential barrier in silicene. By analyzing their depende…

cond-mat.mes-hall2022★ 5 cited

Effect of strain on tunneling time in graphene magnetic barrier

Youssef Fattasse, Miloud Mekkaoui, Ahmed Jellal +1

We solve the Dirac equation in three regions of graphene to get the solutions of the energy spectrum in connection to the strain, energy gap, and magnetic field. The Goos-Hänchen s…

cond-mat.mes-hall2022★ 4 cited

Group delay time of fermions in graphene through tilted potential barrier

Youssef Fattasse, Miloud Mekkaoui, Ahmed Jellal +1

The group delay time of Dirac fermions subjected to a tilting barrier potential along the -axis is investigated in graphene. We start by finding the eigenspinor solution of th…

cond-mat.mes-hall2022★ 8 cited

Strain effect on Goos-Hänchen shifts and group delay time in gapped graphene barrier

Miloud Mekkaoui, Youssef Fattasse, Ahmed Jellal

We investigate the strain effect on the Goos-Hänchen (GH) shifts and group delay time for transmitted Dirac fermions in gapped graphene through a single barrier potential. The solu…

cond-mat.mes-hall2021★ 7 cited

Gap-tunable of Tunneling Time in Graphene Magnetic Barrier

Youssef Fattasse, Miloud Mekkaoui, Ahmed Jellal +1

We study the tunneling time of Dirac fermions in graphene magnetic barrier through an electrostatic potential and a mass term. This latter generates an energy gap in the spectrum a…