Background
Type: Article

Scattering-induced quantum correlation in electronic waveguides with static magnetic impurities

Journal: Quantum Information Processing (15700755)Year: 1 October 2016Volume: 15Issue: Pages: 4219 - 4236
Ghanbari E.aSoltani Renani M.a Alami Z. Sheikhali M.
DOI:10.1007/s11128-016-1390-0Language: English

Abstract

Entanglement generation due to low-energy scattering of the transporting electrons in an electronic waveguide by a quantum dot magnetic impurity is theoretically investigated. The transverse confining potential of the waveguide is considered as a two-dimensional harmonic potential, and the interaction of the electron with the impurity is described by a zero-range pseudopotential modulated by an Ising or a Heisenberg spin interaction. Our calculation shows that the scattering process leads to creation of a considerable amount of entanglement in the state of the reflected and transmitted electrons. The situation is extended to the scattering of the electrons by two well-separated magnetic impurities localized on the nanowire axis. It is shown that the scattering process causes the magnetic impurities embedded in the nanowire to share their quantum information; subsequently, they can be entangled by spin interaction with the injected electron. The created entanglement between the impurities is calculated and discussed. It is shown that the exact three-dimensional problem can be approximated as a one-dimensional problem under certain circumstances. The approximate results are compared to exact calculations and discussed. © 2016, Springer Science+Business Media New York.


Author Keywords

Confining potentialElectronic waveguideEntanglementNanowireQuantum correlationSpin impurity

Other Keywords

Elastic moduliElectronsImpuritiesMagnetismNanowiresQuantum confinementQuantum opticsSemiconductor quantum dotsWaveguidesConfining potentialElectronic waveguidesEntanglementEntanglement generationLow-energy scatteringOne dimensional problemsQuantum correlationsThree-dimensional problemsQuantum entanglement