arXiv · 1112.5400
Magnetic field induced Fabry-Pérot resonances in helical edge states
Abstract
We study electronic transport across a helical edge state exposed to a uniform magnetic ({$\vec B$}) field over a finite length. We show that this system exhibits Fabry-Pérot type resonances in electronic transport. The intrinsic spin anisotropy of the helical edge states allows us to tune these resonances by changing the direction of the {$\vec B$} field while keeping its magnitude constant. This is in sharp contrast to the case of non-helical one dimensional electron gases with a parabolic dispersion, where similar resonances do appear in individual spin channels ($\uparrow$ and $\downarrow$) separately which, however, cannot be tuned by merely changing the direction of the {$\vec B$} field. These resonances provide a unique way to probe the helical nature of the theory.
Explore related subjects
Keep this discovery
Abhiram Soori, Sourin Das, Sumathi Rao. 2012-06-29. Magnetic field induced Fabry-Pérot resonances in helical edge states. https://doi.org/10.1103/physrevb.86.125312
Cite the original work for its findings. Save a collection to share your selection of sources.