Mandal, IpsitaIpsitaMandalSen, AritraAritraSen2025-08-312025-08-312021-05-2810.1016/j.physleta.2021.1272932-s2.0-85102872176http://repository.iitgn.ac.in/handle/IITG2025/25436We investigate the tunneling of the quasiparticles arising in multi-Weyl semimetals through a barrier consisting of both electrostatic and vector potentials, existing uniformly in a finite region along the transmission axis. The dispersion of a multi-Weyl semimetal is linear in one direction (say, k<inf>z</inf>), and proportional to k<inf>⊥</inf><sup>J</sup> in the plane perpendicular to it (where k<inf>⊥</inf>=k<inf>x</inf><sup>2</sup>+k<inf>y</inf><sup>2</sup>). Hence, we study the cases when the barrier is perpendicular to k<inf>z</inf> and k<inf>x</inf>, respectively. For comparison, we also state the corresponding results for the Weyl semimetal.falseFano factor | Multi-Weyl semimetal | Potential barrier | Transmission | Vector potential | WeylTunneling of multi-Weyl semimetals through a potential barrier under the influence of magnetic fieldsArticlehttps://arxiv.org/pdf/2012.1556728 May 202124127293arJournal28