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20032009
most citedDynamics and statistical mechanics of ultra-cold Bose gases using c-field techniques

529 citations · 1.1k across the 25 of their papers we have counts for

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Showing 2009Show all

6 papers · 1 filter

cond-mat.quant-gas20098 cited

Quantitative test of mean-field description of a trapped two-dimensional Bose gas

R. N. Bisset, P. B. Blakie

We investigate the accuracy of two mean-field theories of the trapped two-dimensional Bose gas at predicting transition region properties by comparison to non-perturbative classica…

cond-mat.quant-gas200924 cited

Finite temperature theory of superfluid bosons in optical lattices

D. Baillie, P. B. Blakie

A practical finite temperature theory is developed for the superfluid regime of a weakly interacting Bose gas in an optical lattice with additional harmonic confinement. We derive…

cond-mat.quant-gas200913 cited

Transition region properties of a trapped quasi-two-dimensional degenerate Bose gas

R. N. Bisset, P. B. Blakie

The c-field simulation technique is used to study a trapped quasi-two dimensional Bose gas. We calculate the central curvature of the system density and fluctuations of the condens…

cond-mat.quant-gas200911 cited

Critical temperature of a Bose gas in an optical lattice

D. Baillie, P. B. Blakie

We present theory for the critical temperature of a Bose gas in a combined harmonic lattice potential based on a mean-field description of the system. We develop practical expressi…

cond-mat.quant-gas200923 cited

Numerical method for evolving the dipolar projected Gross-Pitaevskii equation

P. B. Blakie, C. Ticknor, A. S. Bradley +3

We describe a method for evolving the projected Gross-Pitaevskii equation (PGPE) for an interacting Bose gas in a harmonic oscillator potential, with the inclusion of a long-range…

cond-mat.other20095 cited

Adiabatic cooling of a tunable Bose-Fermi mixture in an optical lattice

O. Soe Sorensen, N. Nygaard, P. B. Blakie

We consider an atomic Fermi gas confined in a uniform optical lattice potential, where the atoms can pair into molecules via a magnetic field controlled narrow Feshbach resonance.…