We propose an experimentally feasible scheme for generating entangled terahertz photon pairs in topological insulator quantum dots (TIQDs). We demonstrate theoretically that in generic TIQDs: 1) the fine structure splitting, which is the obstacle to produce entangled photons in conventional semiconductor quantum dots, is inherently absent for one-dimensional massless excitons due to the time-reversal symmetry; 2) the selection rules obey winding number conservation instead of the conventional angular momentum conservation between edge states with a linear dispersion. With these two advantages, the entanglement of the emitted photons during the cascade in our scheme is robust against unavoidable disorders and irregular shapes of the TIQDs.
@article{arxiv.1601.04722,
title = {Entangled Terahertz Photon Emission from Topological Insulator Quantum Dots},
author = {Li-kun Shi and Kai Chang and Chang-Pu Sun},
journal= {arXiv preprint arXiv:1601.04722},
year = {2016}
}
Comments
5 pages and 3 figures for the main text; 4 pages and 1 figure for the supplementary material