We propose a quantum dot qubit architecture that has an attractive combination of speed and fabrication simplicity. It consists of a double quantum dot with one electron in one dot and two electrons in the other. The qubit itself is a set of two states with total spin quantum numbers S2=3/4 (S=\half) and Sz=−\half, with the two different states being singlet and triplet in the doubly occupied dot. The architecture is relatively simple to fabricate, a universal set of fast operations can be implemented electrically, and the system has potentially long decoherence times. These are all extremely attractive properties for use in quantum information processing devices.
@article{arxiv.1110.6622,
title = {A fast "hybrid" silicon double quantum dot qubit},
author = {Zhan Shi and C. B. Simmons and J. R. Prance and John King Gamble and Teck Seng Koh and Yun-Pil Shim and Xuedong Hu and D. E. Savage and M. G. Lagally and M. A. Eriksson and Mark Friesen and S. N. Coppersmith},
journal= {arXiv preprint arXiv:1110.6622},
year = {2013}
}
Comments
Includes text and supplemental material, 12 pages, 9 figures