activity
20042008
most citedHybrid quantum repeater based on dispersive CQED interactions between matter qubits and bright coherent light

168 citations · 608 across the 7 of their papers we have counts for

collaborators

6 papers

quant-ph200882 cited

A high bandwidth quantum repeater

W. J. Munro, R. Van Meter, Sebastien G. R. Louis +1

We present a physical- and link-level design for the creation of entangled pairs to be used in quantum repeater applications where one can control the noise level of the initially…

quant-ph200855 cited

Deterministic optical quantum computer using photonic modules

A. M. Stephens, Z. W. E. Evans, S. J. Devitt +6

The optical quantum computer is one of the few experimental systems to have demonstrated small scale quantum information processing. Making use of cavity quantum electrodynamics ap…

quant-ph200783 cited

Hybrid Quantum Computation in Quantum Optics

P. van Loock, W. J. Munro, Kae Nemoto +4

We propose a hybrid quantum computing scheme where qubit degrees of freedom for computation are combined with quantum continuous variables for communication. In particular, univers…

quant-ph2006168 cited

Hybrid quantum repeater based on dispersive CQED interactions between matter qubits and bright coherent light

Thaddeus D. Ladd, Peter van Loock, Kae Nemoto +2

We describe a system for long-distance distribution of quantum entanglement, in which coherent light with large average photon number interacts dispersively with single, far-detune…

quant-ph2005

Efficient optical quantum information processing

W. J. Munro, Kae Nemoto, T. P. Spiller +3

Quantum information offers the promise of being able to perform certain communication and computation tasks that cannot be done with conventional information technology (IT). Optic…

quant-ph2004

A near deterministic linear optical CNOT gate

Kae Nemoto, W. J. Munro

We show how to construct a near deterministic CNOT using several single photons sources, linear optics, photon number resolving quantum non-demolition detectors and feed-forward. T…