4 papers
Fault-tolerant quantum computing with spins using the conditional Faraday rotation
Michael N. Leuenberger
We propose a fault-tolerant scheme for deterministic quantum computing with spins that is based on a quantum teleportation scheme using the conditional Faraday rotation. The phase…
Teleportation of electronic many-qubit states via single photons
Michael N. Leuenberger, Michael E. Flatte, D. D. Awschalom
We propose a teleportation scheme that relies only on single-photon measurements and Faraday rotation, for teleportation of many-qubit entangled states stored in the electron spins…
Measuring the entanglement of coupled spins by multiphoton interference
Michael N. Leuenberger, Michael E. Flatte, D. D. Awschalom
We propose an experimental method to measure the entanglement of coupled spins, each in a separate quantum dot, by means of multiphoton interference patterns generated through the…
Quantum Spin Dynamics in Molecular Magnets
Michael N. Leuenberger, Florian Meier, Daniel Loss
The detailed theoretical understanding of quantum spin dynamics in various molecular magnets is an important step on the roadway to technological applications of these systems. Qua…