We consider a quantum dot coupled to a topological superconductor and two normal leads and study transport properties of the system. Using Keldysh path-integral approach, we study current fluctuations (shot noise) within the low-energy effective theory. We argue that the combination of the tunneling conductance and the shot noise through a quantum dot allows one to distinguish between the topological (Majorana) and non-topological (e.g., Kondo) origin of the zero-bias conduction peak. Specifically, we show that, while the tunneling conductance might exhibit zero-bias anomaly due to Majorana or Kondo physics, the shot noise is qualitatively different in the presence of Majorana zero modes.
@article{arxiv.1409.3860,
title = {Probing Majorana Physics in Quantum Dot Shot Noise Experiments},
author = {Dong E. Liu and Meng Cheng and Roman M. Lutchyn},
journal= {arXiv preprint arXiv:1409.3860},
year = {2015}
}
Comments
14 pages, 10 figures, with appendix, references updated