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20012009
most citedGiant optical Faraday rotation induced by a single electron spin in a quantum dot: Applications to entangling remote spins via a single photon

342 citations · 1.3k across the 25 of their papers we have counts for

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Showing 2007 · quant-phShow all

7 papers · 2 filters

quant-ph2007342 cited

Giant optical Faraday rotation induced by a single electron spin in a quantum dot: Applications to entangling remote spins via a single photon

C. Y. Hu, A. Young, J. L. O'Brien +1

We propose a quantum non-demolition method - giant Faraday rotation - to detect a single electron spin in a quantum dot inside a microcavity where negatively-charged exciton strong…

quant-ph200773 cited

The Photonic Module: an on-demand resource for photonic entanglement

Simon J. Devitt, Andrew D. Greentree, Radu Ionicioiu +3

Photonic entanglement has a wide range of applications in quantum computation and communication. Here we introduce a new device: the "photonic module", which allows for the rapid,…

quant-ph2007

Practical effects in the preparation of cluster states using weak non-linearities

Peter P. Rohde, William J. Munro, Timothy C. Ralph +2

We discuss experimental effects in the implementation of a recent scheme for performing bus mediated entangling operations between qubits. Here a bus mode, a strong coherent state,…

quant-ph2007171 cited

System Design for a Long-Line Quantum Repeater

Rodney Van Meter, Thaddeus D. Ladd, W. J. Munro +1

We present a new control algorithm and system design for a network of quantum repeaters, and outline the end-to-end protocol architecture. Such a network will create long-distance…

quant-ph200739 cited

Weak non-linearities and cluster states

Sebastien G. R. Louis, Kae Nemoto, W. J. Munro +1

We propose a scalable approach to building cluster states of matter qubits using coherent states of light. Recent work on the subject relies on the use of single photonic qubits in…

quant-ph2007

Error propagation in loss- and failure-tolerant quantum computation schemes

Peter P. Rohde, Timothy C. Ralph, William J. Munro

Qubit loss and gate failure are significant obstacles for the implementation of scalable quantum computation. Recently there have been several proposals for overcoming these proble…