Presentation Information

[Tu-A2-E-02]Gate-Tunable Isospin Switching in Graphene Mach-Zehnder Electronic Interferometer

〇Lilian Seyve1, Antonio Lacerda-Santos1, Yassine Setti1, Bikash Barik1, Leo Pugliese1, Preden Roulleau1, Cosimo Gorini1 (1. SPEC, CEA, Univ. Paris-Saclay (France))
We develop a simulation framework combining self-consistent electrostatics and quantum transport to model a graphene quantum Hall Mach–Zehnder interferometer. By linking gate-controlled junction motion to transmission, our approach aims to model and optimize gate-tunable electron interferometers in graphene devices.