activity
20032009
most citedDynamic Nuclear Polarization with Single Electron Spins

144 citations · 606 across the 5 of their papers we have counts for

collaborators

7 papers

cond-mat.mes-hall200950 cited

Qubit protection in nuclear-spin quantum dot memories

Z. Kurucz, M. W. Sørensen, J. M. Taylor +2

We present a mechanism to protect quantum information stored in an ensemble of nuclear spins in a semiconductor quantum dot. When the dot is charged the nuclei interact with the sp…

cond-mat.mes-hall2007144 cited

Dynamic Nuclear Polarization with Single Electron Spins

J. R. Petta, J. M. Taylor, A. C. Johnson +5

We polarize nuclear spins in a GaAs double quantum dot by controlling two-electron spin states near the anti-crossing of the singlet (S) and m_S=+1 triplet (T+) using pulsed gates.…

quant-ph2006134 cited

A fast and robust approach to long-distance quantum communication with atomic ensembles

L. Jiang, J. M. Taylor, M. D. Lukin

Quantum repeaters create long-distance entanglement between quantum systems while overcoming difficulties such as the attenuation of single photons in a fiber. Recently, an impleme…

quant-ph2005

Quantum measurement of a mesoscopic spin ensemble

G. Giedke, J. M. Taylor, D. D'Alessandro +2

We describe a method for precise estimation of the polarization of a mesoscopic spin ensemble by using its coupling to a single two-level system. Our approach requires a minimal nu…

cond-mat.mes-hall2005

Solid-state circuit for spin entanglement generation and purification

J. M. Taylor, W. Dür, P. Zoller +3

We show how realistic charge manipulation and measurement techniques, combined with the exchange interaction, allow for the robust generation and purification of four-particle spin…

quant-ph2005

Fault-tolerant quantum repeaters with minimal physical resources, and implementations based on single photon emitters

L. I. Childress, J. M. Taylor, A. S. Sorensen +1

We analyze a novel method that uses fixed, minimal physical resources to achieve generation and nested purification of quantum entanglement for quantum communication over arbitrari…