activity
19982009
most citedIon trap transducers for quantum electromechanical oscillators

137 citations · 875 across the 25 of their papers we have counts for

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Showing 2008 · quant-phShow all

6 papers · 2 filters

quant-ph2008

non-Gaussian state generation for light using a trapped ion

Magdalena Stobińska, G. J. Milburn, Krzysztof Wódkiewicz

According to the Gottesmann-Knill theorem the non-Gaussian states are necessary component for a nontrivial quantum computation. We show two efficient and deterministic methods of $…

quant-ph200872 cited

Quantum Connectivity of Space-Time and Gravitationally Induced Decorrelation of Entanglement

T. C. Ralph, G. J. Milburn, T. Downes

We discuss an alternative formulation of the problem of quantum optical fields in a curved space-time using localized operators. We contrast the new formulation with the standard a…

quant-ph20081 cited

Spatial correlation functions for the collective degrees of freedom of many trapped ions

Nicolas C. Menicucci, G. J. Milburn

Spatial correlation functions provide a glimpse into the quantum correlations within a quantum system. Ions in a linear trap collectively form a nonuniform, discretized background…

quant-ph200888 cited

Nonlinear quantum metrology using coupled nanomechanical resonators

M. J. Woolley, G. J. Milburn, Carlton M. Caves

We consider a nanomechanical analogue of a nonlinear interferometer, consisting of two parallel, flexural nanomechanical resonators, each with an intrinsic Duffing nonlinearity and…

quant-ph200827 cited

Quantum noise in a nano mechanical Duffing resonator

E. Babourina-Brooks, A. Doherty, G. J. Milburn

We determine the small signal gain and noise response of an amplifier based on the nonlinear response of a quantum nanomechanical resonator. The resonator is biased in the nonlinea…

quant-ph2008118 cited

Nanomechanical squeezing with detection via a microwave cavity

M. J. Woolley, A. C. Doherty, G. J. Milburn +1

We study a parametrically-driven nanomechanical resonator capacitively coupled to a microwave cavity. If the nanoresonator can be cooled to near its quantum ground state then quant…