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20022008
most citedResource-efficient linear optical quantum computation

806 citations

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quant-ph200839 cited

Toy quantum categories

Bob Coecke, Bill Edwards

We show that Rob Spekken's toy quantum theory arises as an instance of our categorical approach to quantum axiomatics, as a (proper) subcategory of the dagger compact category FRel…

quant-ph200814 cited

NMR implementations of Gauss sums

Jonathan A. Jones

I describe the use of NMR experiments which implement Gauss sums as a method for factoring numbers and discuss whether this approach can be computationally useful.

quant-ph2005129 cited

Brokered Graph State Quantum Computing

Simon C. Benjamin, Dan E. Browne, Joe Fitzsimons +1

We describe a procedure for graph state quantum computing that is tailored to fully exploit the physics of optically active multi-level systems. Leveraging ideas from the literatur…

quant-ph20052 cited

Sharing Polarization within Quantum Subspaces

M. S. Anwar, J. A. Jones, S. B. Duckett

Given an ensemble of n spins, at least some of which are partially polarized, we investigate the sharing of this polarization within a subspace of k spins. We assume that the shari…

quant-ph20059 cited

Global Optical Control of a Quantum Spin Chain

Brendon W. Lovett

Quantum processors which combine the long decoherence times of spin qubits together with fast optical manipulation of excitons have recently been the subject of several proposals.…

quant-ph20051 cited

Quantum Interferometric Sensors

Kishore T. Kapale, Leo D. Didomenico, Hwang Lee +2

Quantum entanglement has the potential to revolutionize the entire field of interferometric sensing by providing many orders of magnitude improvement in interferometer sensitivity.…