activity
20012005
most citedCoherent electronic transfer in quantum dot systems using adiabatic passage

285 citations · 701 across the 14 of their papers we have counts for

collaborators

15 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-ph200551 cited

Quantum information transport to multiple receivers

Andrew D. Greentree, Simon J. Devitt, Lloyd C. L. Hollenberg

The importance of transporting quantum information and entanglement with high fidelity cannot be overemphasized. We present a scheme based on adiabatic passage that allows for tran…

cond-mat.mes-hall20053 cited

Analysis and Geometric Optimization of Single Electron Transistors for Read-Out in Solid-State Quantum Computing

Vincent I. Conrad, Andrew D. Greentree, David N. Jamieson +1

The single electron transistor (SET) offers unparalled opportunities as a nano-scale electrometer, capable of measuring sub-electron charge variations. SETs have been proposed for…

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…