Quantum state swapping via qubit network with Hubbard interaction
arXiv:quant-ph/0510109 · doi:10.1103/PhysRevB.73.195122
Abstract
We study the quantum state transfer (QST) in a class of qubit network with on-site interaction, which is described by the generalized Hubbard model with engineered couplings. It is proved that the system of two electrons with opposite spins in this quantum network of sites can be rigorously reduced into one dimensional engineered single Bloch electron models with central potential barrier. With this observation we find that such system can perform a perfect QST, the quantum swapping between two distant electrons with opposite spins. Numerical results show such QST and the resonant-tunnelling for the optimal on-site interaction strengths.
4 pages, 3 figures