most citedCoherent electronic transfer in quantum dot systems using adiabatic passage

285 citations · 470 across the 6 of their papers we have counts for

collaborators

6 papers

quant-ph200543 cited

Identifying a Two-State Hamiltonian in the Presence of Decoherence

Jared H. Cole, Andrew D. Greentree, Daniel K. L. Oi +3

Mapping the system evolution of a two-state system allows the determination of the effective system Hamiltonian directly. We show how this can be achieved even if the system is dec…

quant-ph200520 cited

Precision characterisation of two-qubit Hamiltonians via entanglement mapping

Jared H. Cole, Simon J. Devitt, Lloyd C. L. Hollenberg

We show that the general Heisenberg Hamiltonian with non-uniform couplings can be characterised by mapping the entanglement it generates as a function of time. Identification of th…

quant-ph200587 cited

Identifying an Experimental Two-State Hamiltonian to Arbitrary Accuracy

Jared H. Cole, Sonia G. Schirmer, Andrew D. Greentree +3

Precision control of a quantum system requires accurate determination of the effective system Hamiltonian. We develop a method for estimating the Hamiltonian parameters for some un…

cond-mat.mes-hall200431 cited

Quantum-Dot Cellular Automata using Buried Dopants

Jared H. Cole, Andrew D. Greentree, Cameron J. Wellard +2

The use of buried dopants to construct quantum-dot cellular automata is investigated as an alternative to conventional electronic devices for information transport and elementary c…

cond-mat.other2004285 cited

Coherent electronic transfer in quantum dot systems using adiabatic passage

Andrew D. Greentree, Jared H. Cole, A. R. Hamilton +1

We describe a scheme for using an all-electrical, rapid, adiabatic population transfer between two spatially separated dots in a triple-quantum dot system. The electron spends no t…

quant-ph20044 cited

An algorithm for simulating the Ising model on a type-II quantum computer

J. H. Cole, L. C. L. Hollenberg, S. Prawer

Presented here is an algorithm for a type-II quantum computer which simulates the Ising model in one and two dimensions. It is equivalent to the Metropolis Monte-Carlo method and t…