English

Persistent current in a mesoscopic cylinder: effects of radial magnetic field

Mesoscale and Nanoscale Physics 2009-06-29 v1 Materials Science

Abstract

In this work, we study persistent current in a mesoscopic cylinder subjected to both longitudinal and transverse magnetic fluxes. A simple tight-binding model is used to describe the system, where all the calculations are performed exactly within the non-interacting electron picture. The current II is investigated numerically concerning its dependence on total number of electrons NeN_e, system size NN, longitudinal magnetic flux ϕl\phi_l and transverse magnetic flux ϕt\phi_t. Quite interestingly we observe that typical current amplitude oscillates as a function of the transverse magnetic flux, associated with the energy-flux characteristics, showing Nϕ0N \phi_0 flux-quantum periodicity, where NN and ϕ0\phi_0 (=ch/e)(=ch/e) correspond to the system size and the elementary flux-quantum respectively. This analysis may provide a new aspect of persistent current for multi-channel cylindrical systems in the presence of radial magnetic field BrB_r, associated with the flux ϕt\phi_t.

Keywords

Cite

@article{arxiv.0906.3795,
  title  = {Persistent current in a mesoscopic cylinder: effects of radial magnetic field},
  author = {Santanu K. Maiti and F. Aeenehvand},
  journal= {arXiv preprint arXiv:0906.3795},
  year   = {2009}
}

Comments

6 pages, 5 figures