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Publications

2012 2011 2010 2009 2008 2007 2006 2005 2004 2003 2002 2001 2000 1999 1998 1997

2012

8. Violation of the Cauchy-Schwarz inequality with matter waves.
K. V. Kheruntsyan, J.-C. Jaskula, P. Deuar, M. Bonneau, G. B. Partridge, J. Ruaudel, R. Lopes, D. Boiron, and C. I. Westbrook
arXiv:1204.0058
7. Spectral Analysis of a Four Mode Cluster State.
S. L. W. Midgley and M. K. Olsen,
arXiv:1108.2979v1
6. Dynamical tunnelling with Bose-Einstein condensates in magnetic microtraps.
Martin Lenz, Christopher J. Vale, Sebastian Wuester, Norman R.
Heckenberg, Halina Rubinsztein-Dunlop, Cathy A. Holmes, G. J. Milburn, Matthew J. Davis,
arXiv:1011.0242
5. Quantum kinetic theory model of a continuous atom laser.
G.R. Dennis, Matthew J. Davis, J.J. Hope
arXiv:1011.5296
4. Macroscopic Quantum Self-Trapping in Dynamical Tunnelling.
Sebastian Wüster, Beata J. Dabrowska, Matthew J. Davis
arXiv:1112.2086
 
3. Yang-Yang thermometry and momentum distribution of a trapped one-dimensional Bose gas.
M. J. Davis, P. B. Blakie, A. H. van Amerongen, N. J. van Druten, K. V. Kheruntsyan
Phys. Rev. A 85, 031604(R) (2012)
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2. Phase-space methods for fermions.
P. Corboz, M. Ögren, K. V. Kheruntsyan, and J. F. Corney,
To appear in ''Quantum Gases: Finite Temperature and Non-equilibrium Dynamics'', Eds. N.P. Proukakis, S.A. Gardiner, M.J. Davis, N. Nygaard, M.H. Szymanska (Imperial College Press, 2012).
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1. Critique of generalised purity as an entanglement measure: Explicit failure in simple separable Bose–Hubbard models.
C.V. Chiancaa, M.K. Olsen,
Optics Comm. 285, 825 (2012)
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2011

11. Phase Separation and Pattern Formation in a Binary Bose-Einstein Condensate.
Jacopo Sabbatini, Wojciech H. Zurek, and Matthew J. Davis,
Phys. Rev. Lett. 107, 230402 (2011)
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10. Surpassing the Standard Quantum Limit in an Atom Interferometer with Four-mode Entanglement Produced from Four-Wave Mixing.
S. A. Haine, A. J. Ferris,
Phys. Rev. A 84, 043624 (2011)
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9. Optically trapped atom interferometry using the clock transition of large Rb-87 Bose-Einstein condensates.
P.A. Altin, G. McDonald, D. Doring, J.E. Debs, T. Barter, N.P. Robins, J.D. Close, S.A. Haine, T.M. Hanna, R.P. Anderson,
New Journal of Physics, 13, 065020 (2011)
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8. Ultra-sensitive atom imaging for matter-wave optics.
M Pappa, P C Condylis, G O Konstantinidis, V Bolpasi, A Lazoudis, O Morizot, D Sahagun, M Baker and W von Klitzing,
New J. Phys. 13 115012 (2011)
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7. Quantum phase-space analysis of population equilibration in multiwell ultracold atomic systems.
C. V. Chianca and M. K. Olsen,
Phys. Rev. A 84, 043636 (2011)
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6. Many-body physics in the classical-field description of a degenerate Bose gas.
T. M. Wright, N. P. Proukakis, and M. J. Davis,
Phys. Rev. A 84, 023608 (2011)
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5. Sub-Poissonian fluctuations in a 1D Bose gas: from the quantum quasicondensate to the strongly interacting regime.
T. Jacqmin, J. Armijo, T. Berrada, K. V. Kheruntsyan, and I. Bouchoule
Phys. Rev. Lett. 106, 230405 (2011)
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4. Stochastic simulations of fermionic dynamics with phase-space representations.
Magnus Ögren, K. V. Kheruntsyan, and J. F. Corney
Comp. Phys. Comm. 182, 1999 (2011)
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3. Growth Dynamics of a Bose-Einstein condensate in a dimple trap without cooling.
Michael C. Garrett, Adrian Ratnapala, Eikbert D. van Ooijen, Christopher J. Vale, Kristian Weegink, Sebastian K. Schnelle, Otto Vainio, Norman R. Heckenberg, Halina Rubinsztein-Dunlop, Matthew J. Davis.
Phys. Rev. A. 83, 013630 (2011)
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2. Quantum dynamics of a four-well Bose-Hubbard model with two different tunneling rates.
C. V. Chianca and M. K. Olsen
Phys. Rev. A 83, 043607 (2011)
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1. Mapping out the quasi-condensate transition through the dimensional crossover from one to three dimensions.
J. Armijo, T. Jacqmin, K. V. Kheruntsyan, and I. Bouchoule,
Phys. Rev. A 83, 021605(R) (2011)
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2010

15. Analysis of a continuous-variable quadripartite cluster state from a single optical parametric oscillator.
S.L.W. Midgley, A.S. Bradley, O. Pfister, M.K. Olsen,
Phys. Rev. A 82, 053826 (2010)
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14. Probing three-body correlations in a quantum gas using the measurement of the third moment of density fluctuations.
J. Armijo, T. Jacqmin, K. V. Kheruntsyan, and I. Bouchoule,
Phys. Rev. Lett. 105, 230402 (2010)
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13. Analysis of a continuous-variable quadripartite cluster state from a single optical parametric oscillator.
S. L. W. Midgley, M. K. Olsen, A. S. Bradley, O. Pfister,
Phys. Rev. A 82, 053826 (2010)
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12. First-principles quantum dynamics for fermions: application to molecular dissociation.
Magnus Ögren, K. V. Kheruntsyan, and J. F. Corney,
EPL 92, 36003 (2010)
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11. Sub-Poissonian Number Differences in four-wave mixing of matter waves.
J.-C. Jaskula, M. Bonneau, G. B. Partridge, V. Krachmalnicoff, P. Deuar, K. V. Kheruntsyan, A. Aspect, D. Boiron, and C. I. Westbrook,
Phys. Rev. Lett. 105, 190402 (2010)
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10. Temporal coherence, anomalous moments, and pairing correlations in the classical-field description of a degenerate Bose gas.
T. M. Wright, P. B. Blakie, and R. J. Ballagh
Phys. Rev. A 82, 013621 (2010)
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9. Role of spatial inhomogeneity in dissociation of trapped molecular condensates.
Magnus Ögren and K. V. Kheruntsyan,
Phys. Rev. A 82, 013641 (2010)
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8. Multimode analysis of non-classical correlations in double-well Bose–Einstein condensates.
Andrew J Ferris and Matthew J Davis
New J. Phys. 12 055024 (2010)
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7. Observation of Vortex Dipoles in an Oblate Bose-Einstein Condensate.
T. W. Neely, E. C. Samson, A. S. Bradley, M. J. Davis, and B. P. Anderson
Phys. Rev. Lett. 104, 160401 (2010)
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6. Quadripartite continuous-variable entanglement via quadruply concurrent down-conversion.
S. L. W. Midgley, A. S. Bradley, O. Pfister and M. K. Olsen
Phys. Rev. A 81, 063834 (2010)
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5. Demonstrating mesoscopic superpositions in double-well Bose–Einstein condensates.
T.J. Haigh, A.J. Ferris, M.K. Olsen,
Optics Comm. 283, 3540 (2010)
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4. Spontaneous Four-Wave Mixing of de Broglie Waves: Beyond Optics.
V. Krachmalnicoff, J.-C. Jaskula, M. Bonneau, V. Leung, G. B. Partridge, D. Boiron, C. I. Westbrook, P. Deuar, P. Zin, M. Trippenbach, and K.V. Kheruntsyan,
Phys. Rev. Lett. 104, 150402 (2010)
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3. Vortex pairing in two-dimensional Bose gases.
C. J. Foster, P. B. Blakie, and M. J. Davis,
Physical Review A 81, 023623 (2010)
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2. Correlations of Rydberg excitations in an ultracold gas after an echo sequence.
S. Wüster, J. Stanojevic1, C. Ates, T. Pohl, P. Deuar, J. F. Corney, and J. M. Rost,
Phys. Rev. A 81, 023406 (2010)
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1. Asymmetric steering: when Alice and Bob disagree.
S. L. W. Midgley, A. J. Ferris, M. K. Olsen,
Phys. Rev. A 81, 022101 (2010)
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2009

14. Numerical method for evolving the dipolar projected Gross-Pitaevskii equation.
P. B. Blakie, C. Ticknor, A. S. Bradley, A. M. Martin, M. J. Davis, and Y. Kawaguchi,
Phys. Rev. E 80, 016703 (2009)
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13. Dynamic scheme for generating number squeezing in Bose-Einstein condensates through nonlinear interactions.
S.A. Haine and M.T. Johnsson, Matthew J. Davis, and David C. Roberts,
Phys Rev A 80, 023611 (2009)
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12. Quantum-limited metrology and Bose-Einstein condensates.
Sergio Boixo, Animesh Datta, Matthew J. Davis,4 Anil Shaji, Alexandre B. Tacla and Carlton M. Caves,
Phys. Rev. A 80, 032103 (2009)
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11. Observation of shock waves in a large Bose-Einstein condensate.
R. Meppelink, S. B. Koller, J. M. Vogels, and P. van der Straten, E. D. van Ooijen, N. R. Heckenberg, and H. Rubinsztein-Dunlop and S. A. Haine and M. J. Davis,
Phys. Rev. A 80, 043606 (2009)
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10. Commuting Heisenberg operators as the quantum response problem: Time-normal averages in the truncated Wigner representation.
B. Berg, L. I. Plimak, A. Polkovnikov, M. K. Olsen, M. Fleischhauer, W. P. Schleich,
Phys. Rev. A 80, 033624 (2009)
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9. Dynamical formation and interaction of bright solitary waves and soliton in the collapse of a Bose-Einstein condensate with attractive interactions.
B. J. Dąbrowska-Wüster, S. Wüster, and M. J. Davis,
New J. Phys. 11 053017 (2009)
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8. Drag Force on an Impurity below the Superfluid Critical Velocity in a Quasi-One-Dimensional Bose-Einstein Condensate.
Andrew G. Sykes, Matthew J. Davis, and David C. Roberts,
Phys. Rev. Lett. 103, 085302 (2009)
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7. Numerical representation of quantum states in the positive-P and Wigner representations.
M.K. Olsen and A.S. Bradley
Opt. Comm. 282 3924 (2009)
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6. Atomic entanglement generation and detection via degenerate four-wave mixing of a Bose-Einstein condensate in an optical lattice.
A.J. Ferris, M.K. Olsen, M.J. Davis,
Phys. Rev. A 79 043634 (2009)
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5. Comparative study of dynamical simulation methods for the dissociation of molecular Bose-Einstein condensates.
S. L. W. Midgley, S. Wüester, M. K. Olsen, M. J. Davis, and K. V. Kheruntsyan
Phys. Rev. A 79, 053632 (2009)
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4. Quasi-condensation and coherence in the quasi-two-dimensional trapped Bose gas.
R.N. Bisset, M.J. Davis, T.P. Simula and P.B. Blakie,
Phys. Rev. A 79, 033626 (2009)
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3. Directional effects due to quantum statistics in dissociation of elongated molecular condensates.
Magnus Ogren, C. M. Savage, and K. V. Kheruntsyan,
Phys. Rev. A 79, 043624 (2009)
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2. Non-local pair correlations in the 1D Bose gas at finite temperature.
P. Deuar, A. G. Sykes, D. M. Gangardt, M. J. Davis, P. D. Drummond, and K. V. Kheruntsyan
Phys. Rev. A 79, 043619 (2009)
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1. Atom-atom correlations in colliding Bose-Einstein condensates.
Magnus Ogren and K. V. Kheruntsyan,
Phys. Rev. A 79, 021606 (2009)
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2008

28. Versatile two-dimensional potentials for ultracold atoms.
S. Schnelle, E.D. van Ooijen, M.J. Davis, N.R. Heckenberg, and H. Rubinsztein-Dunlop
Opt. Express 16, 1405 (2008)
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27. Quantum Metrology: Dynamics versus Entanglement.
S. Boixo, A. Datta, M. J. Davis, S. T. Flammia, A. Shaji and C. M. Caves,
Phys. Rev. Lett. 101, 040403 (2008)
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26. Qubit phase space: SU(n) coherent-state P representations.
D. W. Barry and P. D. Drummond,
Phys. Rev. A 78, 052108 (2008)
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25. Dynamics and statistical mechanics of ultra-cold Bose gases using c-field techniques.
P. B. Blakie,  A. S. Bradley,  M. J. Davis,  R. J. Ballagh, and C. W. Gardiner,
Advances in Physics 57, 363 (2008)
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24. Criteria for generalized macroscopic and mesoscopic quantum coherence.
E. G. Cavalcanti and M. D. Reid
Phys. Rev. A 77, 062108 (2008)
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23. Coherence and Correlations in Atom Lasers,
P.D. Drummond, T. Vaughan, J. F. Corney, G. Leuchs and  P. Deuar,
in Conf. on Coherence and Quantum Optics, paper CWA1 (2008).
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22. Dynamical instabilities of Bose-Einstein condensates at the band-edge in one-dimensional optical lattices.
A. J. Ferris, M. J. Davis, R W. Geursen, P. B. Blakie and A. C. Wilson
Phys. Rev. A 77, 012712 (2008)
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21. Superfluidity of an interacting trapped quasi-2D Bose gas.
T. P. Simula, M. J. Davis, and P. B. Blakie
Phys. Rev. A 77, 023618 (2008)
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20. Detection of continuous variable entanglement without coherent local oscillators.
A. J. Ferris, M. K. Olsen, E. G. Cavalcanti and M. J. Davis
Phys. Rev. A  78, 060104(R) (2008)
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19. Superfluidity of an interacting trapped quasi-2D Bose gas.
T. P. Simula, M. J. Davis, and P. B. Blakie,
Phys. Rev. A 77, 023618 (2008)
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18. Simulations and experiments on polarization squeezing in optical fiber.
Joel F. Corney, Joel Heersink, Ruifang Dong, Vincent Josse, Peter D. Drummond, Gerd Leuchs, and Ulrik L. Andersen,  
Phys. Rev. A 78 023831 (2008)
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17. Spontaneous vortices in the formation of Bose–Einstein condensates.
Chad N. Weiler, Tyler W. Neely, David R. Scherer, Ashton S. Bradley, Matthew J. Davis & Brian P. Anderson,
Nature 455, 948 (2008)
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16. Dynamical thermalization and vortex formation in stirred two-dimensional Bose-Einstein condensates.
T. M. Wright, R. J. Ballagh, A. S. Bradley, P. B. Blakie, and C. W. Gardiner,
Phys. Rev. A 78, 063601 (2008)
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15. From squeezed atom lasers to teleportation of massive particles.
M.K. Olsen, S.A. Haine, A.S. Bradley, and J.J. Hope,
Eur. Phys. J. Special Topics 160, 331 (2008)
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14. Finite-temperature phase diagram of a spin-polarized ultracold Fermi gas in a highly elongated harmonic trap.
Xia-Ji Liu, Hui Hu, and Peter D Drummond
Phys. Rev. A 78, 023601, (2008)
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13. Comparative study of strong-coupling theories of a trapped Fermi gas at unitarity.
Hui Hu, Xia-Ji Liu, and Peter D Drummond,
Phys. Rev. A 77, 061605(R), (2008)
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12. Hybrid phase-space simulation method for interacting Bose fields.
Scott E. Hoffmann, Joel F. Corney, and Peter D. Drummond,
Phys. Rev. A 78, 013622 (2008)
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11. Atom-atom correlations and relative number squeezing in dissociation of spatially inhomogeneous molecular condensates.
Magnus Ogren and K. V. Kheruntsyan,
Phys. Rev. A 78, 011602(R) (2008)
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10. Bose-Einstein Condensation from a Rotating Thermal Cloud: Vortex Nucleation and Lattice Formation.
A. S. Bradley, C. W. Gardiner, M. J. Davis,
Phys. Rev. A 77, 033616 (2008)
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9. Atomic four-wave mixing via condensate collisions.
A. Perrin, C. M. Savage, D. Boiron, V. Krachmalnicoff, C. I. Westbrook, and K. V. Kheruntsyan
New J. Physics 10, 045021 (2008)
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8. Spatial Nonlocal Pair Correlations in a Repulsive 1D Bose Gas.
A. G. Sykes, D. M. Gangardt, M. J. Davis, K. Viering, M. G. Raizen, and K. V. Kheruntsyan
Phys. Rev. Lett. 100, 160406 (2008)
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7. Variational theory of two-fluid hydrodynamic modes at unitarity.
Edward Taylor, Hui Hu, Xia-Ji Liu, and Allan Griffin,
Phys. Rev. A 77 033608 (2008)
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6. Yang-Yang thermodynamics on an atom chip.
A. H. van Amerongen, J. J. P. van Es, P. Wicke, K. V. Kheruntsyan, and N. J. van Druten,
Phys. Rev. Lett. 100, 090402 (2008)
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5. Bright bichromatic entanglement and quantum dynamics of sum frequency generation,
M. K. Olsen and A. S. Bradley,
Phys. Rev. A. 77, 023813 (2008)
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4. Pairing mean-field theory for the dynamics of dissociation of molecular Bose-Einstein condensates.
M. J. Davis, S. J. Thwaite, M. K. Olsen, and K. V. Kheruntsyan,
Phys. Rev. A 77, 023617 (2008)
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3. Multi-component strongly attractive Fermi gas: a color superconductor in a one-dimensional harmonic trap.
Xia-Ji Liu, Hui Hu, Peter D. Drummond,
Phys. Rev. A. 77, 013622(2008)
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2. Bright continuous-variable entanglement from the quantum optical dimer.
M J Mallon, M D Reid and M K Olsen,
J. Phys. B 41, 015501 (2008)
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1. Experimental evidence for Raman-induced limits to efficient squeezing in optical fibers.
Ruifang Dong, Joel Heersink, Joel F. Corney, Peter D. Drummond, Ulrik L. Andersen, and
Gerd Leuchs,
Optics Letters 33, No. 2, 116 (2008)
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2007

27. Generating squeezing in an atom laser through self-interaction.
Mattias T. Johnsson, Simon A. Haine,
Phys. Rev. Lett. 99, 010401 (2007)
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26. Calibration of a single-atom detector for atomic microchips.
A. Stibor1, S. Kraft, T. Campey, D. Komma, A. Günther, J. Fortágh, C. J. Vale, H. Rubinsztein-Dunlop, and C. Zimmermann,
Phys. Rev. A 76, 033614 (2007)
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25. Uncertainty relations for the realisation of macroscopic quantum superpositions and EPR paradoxes.
E. G. Cavalcanti and M. D. Reid,
 J. Mod Optics 54 , 2373 (2007)
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24. Excitation spectrum of bosons in a finite one-dimensional circular
waveguide via the Bethe ansatz
A. G. Sykes, P. D. Drummond, and M. J. Davis
Phys. Rev. A 76, 063620 (2007)
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23. Quantum dynamics in phase space: from coherent states to the Gaussian representation.
P. D. Drummond, P. Deuar, T. G. Vaughan and J. F. Corney,
J. Mod Optics 54, 2499 (2007)
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22. Quantum limits to center-of-mass measurements.
Timothy Vaughan, Peter Drummond, Gerd Leuchs
Phys. Rev. A 75, 033617 (2007)
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21. Tripartite entanglement and threshold properties of coupled intracavity down-conversion and sum-frequency generation.
C. Pennarun, A. S. Bradley, and M. K. Olsen,
Phys. Rev. A 76, 063812 (2007)
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20. Spatial pair correlations of atoms in molecular dissociation.
C. M. Savage and K. V. Kheruntsyan,
Phys. Rev. Lett. 99, 220404 (2007)
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19. Bell Inequalities for Continuous-Variable Correlations.
E. G. Cavalcanti, C. J. Foster, M. D. Reid, and P. D. Drummond
Phys. Rev. Lett. 99, 210405 (2007)
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18. Quantum many-body simulations using Gaussian phase-space representations.
P. D. Drummond, P. Deuar, and J. F. Corney,
Opt. and Spec. 103, 7 (2007)
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17. Fulde-Ferrell-Larkin-Ovchinnikov states in one-dimensional spin-polarized ultracold atomic Fermi gases.
Xia-Ji Liu, Hui Hu, and Peter D. Drummond
Phys. Rev. A 76, 043605 (2007)
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16. Raman scheme to measure the quantum statistics of an atom laser beam
A.S. Bradley, M.K. Olsen, S.A. Haine and J.J. Hope,
Phys. Rev. A 76 033601 (2007)
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15. The Quantum de Laval Nozzle: stability and quantum dynamics of sonic horizons in a toroidally trapped Bose gas containing a superflow.
P. Jain, A. S. Bradley, C. W. Gardiner,
Phys. Rev. A 76, 023617 (2007)
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14. Calorimetry of Bose-Einstein condensates.
P. B. Blakie, E. Toth, and M. J. Davis,
J. Phys. B 40, 3273 (2007)
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13. Classical Region of a Trapped Bose Gas.
P. B. Blakie and M. J. Davis,
J. Phys. B 40, 2043 (2007)
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12. Continuous variable tripartite entanglement and Einstein-Podolsky-Rosen correlations from triple nonlinearities,
M. K. Olsen, A. S. Bradley, and M. D. Reid
Optics and Spectroscopy 103, 195 (2007)
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11. Quantum statistical measurements of an atom laser beam,
M.K. Olsen, A.S. Bradley, S.A. Haine and J.J. Hope
Nuclear Physics A 790, 733 (2007)
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10. Universal thermodynamics of strongly interacting Fermi gases.
Hui Hu, Peter D. Drummond & Xia-Ji Liu
Nature Physics 3, 469 (2007)
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9. Quantum depletion of collapsing Bose-Einstein condensates.
Sebastian Wüster, Beata J. Dąbrowska-Wüster, Ashton S. Bradley, Matthew J. Davis, P. Blair Blakie, Joseph J. Hope, and Craig M. Savage,
Phys. Rev. A 75, 043611 (2007)
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8. Correlations in a BEC Collision: First-Principles Quantum Dynamics with 150,000 Atoms.
P. Deuar and P. D. Drummond,
Phys. Rev. Lett. 98, 120402 (2007)
pdf
7. Interaction-induced crossover versus finite-size condensation in a weakly interacting trapped one-dimensional Bose gas.
I. Bouchoule, K. V. Kheruntsyan, and G. V. Shlyapnikov,
Phys. Rev. A 75, 031606(R) (2007)
pdf
6. Mean-field thermodynamics of a spin-polarized spherically trapped Fermi
gas at unitarity.

Xia-Ji Liu, Hui Hu, and Peter D. Drummond,
Phys. Rev. A 75, 023614 (2007)
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5. Phase Diagram of a Strongly Interacting Polarized Fermi Gas in One Dimension.
Hui Hu, Xia-Ji Liu, and Peter D. Drummond,
Phys. Rev. Lett. 98, 070403 (2007)
pdf
4. Visualization of vortex bound states in polarized Fermi gases at unitarity.
Hui Hu, Xia-Ji Liu, Peter D. Drummond
Phys. Rev. Lett. 98, 060406 (2007)
pdf
3. Population and Phase Coherence during the Growth of an Elongated Bose-Einstein Condensate.
M. Hugbart, J. A. Retter, A. Varòn, P. Bouyer, A. Aspect and M. J. Davis,
Phys. Rev. A 75, 011602 (2007)
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2. Density fingerprint of giant vortices in Fermi gases near a Feshbach resonance.
Hui Hu, Xia-Ji Liu
Phys. Rev. A 75,011603 (2007)
pdf
1. Monte Carlo techniques for real-time quantum dynamics
Mark R. Dowling, Matthew J. Davis, Peter D. Drummond and Joel F. Corney,
J. Comp. Phys. 220, 549 (2007)
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2006

25. Fringe spacing and phase of interfering matter waves.
O. Vainio, C. J. Vale, M. J. Davis, N. R. Heckenberg and H. Rubinsztein-Dunlop,
Phys. Rev. A 73, 063613 (2006)
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24. Atom counting in ultra-cold gases using photoionisation and ion detection.
T. Campey, C. J. Vale, M. J. Davis, N. R. Heckenberg, H. Rubinsztein-Dunlop, S. Kraft, C. Zimmermann and J. Fortágh,
Phys. Rev. A 74, 043612 (2006)
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23. Asymmetric polychromatic tripartite entanglement from interlinked chi(2) parametric interactions
M. K. Olsen and A. S. Bradley,
Phys. Rev. A 74, 063809 (2006)
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22. Signatures for Generalized Macroscopic Superpositions.
E. G. Cavalcanti and M. D. Reid
Phys. Rev. Lett. 97, 170405 (2006)
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21. First-principles quantum simulations of dissociation of molecular condensates: Atom correlations in momentum space.
C. M. Savage, P. E. Schwenn, and K. V. Kheruntsyan
Phys. Rev. A 74, 033620 (2006)
pdf
20. Many-Body Quantum Dynamics of Polarization Squeezing in Optical Fibers.
J F Corney, P D Drummond, J Heersink, V Josse, G Leuchs, and U L Andersen,
Phys. Rev. Lett. 97, 23606 (2006)
pdf
19. BCS-BEC crossover in an asymmetric two-component Fermi gas.
Xia-Ji Liu and Hui Hu
Europhys. Lett. 75, 364 (2006)
pdf
18. Dual symmetric Lagrangians in quantum electrodynamics I: Conservation laws and multipolar coupling.
P. D. Drummond
J. Phys. B 39, S573 (2006)
pdf
17. Entanglement properties of degenerate four-wave mixing of matter waves in a periodic potential.
M.K. Olsen and M.J. Davis
Phys. Rev. A 73, 063618 (2006)
pdf
16. Mean field phase diagrams of imbalanced Fermi gases near a Feshbach resonance.
Hui Hu and Xia-Ji Liu,
Phys. Rev. A 73, 051603(R) (2006)
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15. Equation of State of a superfluid Fermi gas in the BCS-BEC crossover.
H. Hu, X.-J. Liu, P. D. Drummond,
Europhys. Lett. 74, 574 (2006)
pdf
14. Continuous variable tripartite entanglement and Einstein-Podolsky-Rosen correlations from triple nonlinearities.
M K Olsen, A S Bradley and M D Reid,
J. Phys. B 39 2515 (2006)
pdf
13. Three-body recombination of ultracold Bose gases using the truncated Wigner method.
A. A. Norrie, R. J. Ballagh, C. W. Gardiner, and A. S. Bradley,
Phys. Rev. A 73, 043618 (2006)
pdf
12. Reply to Comment on "Gaussian Quantum Monte Carlo Methods for Fermions and Bosons".
J. F. Corney and P. D. Drummond,
Phys. Rev. Lett 96, 188902 (2006)
pdf
11. Gaussian phase-space representations for fermions.
J. F. Corney and P. D. Drummond,
Phys. Rev. B 73, 125112 (2006)
pdf
10. Bright entanglement in the intracavity nonlinear coupler
M. K. Olsen,
Phys. Rev. A 73, 053806 (2006)
pdf
9. Generating Controllable Atom-Light Entanglement with a Raman Atom Laser System.
S. A. Haine, M. K. Olsen, and J. J. Hope,
Phys. Rev. Lett. 96, 133601 (2006)
pdf
8. Temperature of a trapped unitary Fermi gas at finite entropy.
Hui Hu, Xia-Ji Liu, and P. D. Drummond,
Phys. Rev. A 73, 023617 (2006)
pdf
7. Quantum Atom Optics with Fermions from Molecular Dissociation.
K. V. Kheruntsyan,
Phys. Rev. Lett. 96, 110401 (2006)
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6. First-principles quantum dynamics in interacting Bose gases: I. The positive P representation.
P Deuar and P D Drummond,
J. Phys. A: Math. Gen. 39, 1163 (2006)
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5. First-principles quantum dynamics in interacting Bose gases II: stochastic gauges.
P. Deuar and P. D. Drummond,
J. Phys. A: Math. Gen. 39, 2723 (2006)
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4. Critical Temperature of a Trapped Bose Gas: Comparison of Theory and Experiment.
M. J. Davis and P. Blair Blakie,
Phys. Rev. Lett. 96, 060404 (2006)
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3. Bright entanglement and the Einstein-Podolsky-Rosen paradox with coupled parametric oscillators.
N. Olivier and M.K. Olsen,
Opt. Commun. 259, 781 (2006)
pdf
2. Gaussian operator bases for correlated fermions.
J. F. Corney and P. D. Drummond
J. Phys. A 39, 269 (2006)
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1. Continuous variable tripartite entanglement from twin nonlinearities
M. K. Olsen and A. S. Bradley
J. Phys. B: At. Mol. Opt. Phys. 39 127 (2006)
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2005

20. Correlations and collective modes in fermions on lattices, in Laser Spectroscopy: Proceedings of the XVII International Conference, edited by E. A. Hinds, A. Ferguson and E. Riis, (World Scientific, 2005) 167-177. (2005).
19. Combined chips for atom optics
A. Gunther, M. Kemmler, S. Kraft, C. J. Vale, C. Zimmerman and J. Fortágh.
Phys. Rev. A71, 063619 (2005).
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18. Self-consistent theory of atomic Fermi gases with a Feshbach resonance at the superfluid transition.
Xia-Ji Liu and Hui Hu
Phys. Rev. A 72, 063613 (2005)
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17. Calculation of the microcanonical temperature for the classical Bose field.
M. J. Davis and P. B. Blakie.
J. Phys. A 38, 10259 (2005)
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16. Projected Gross-Pitaevskii Equation for harmonically confined Bose gases at finite temperature
P. B. Blakie and M. J. Davis,
Phys. Rev. A 72, 063608 (2005)
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15. Ultra-cold fermions in optical lattices.
P. D. Drummond, J. F. Corney, X.-J. Liu, and H. Hu
J. Modern Optics 52, 2261 (2005)
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14. Macroscopic quantum Schrödinger and Einstein–Podolsky–Rosen paradoxes.
M. D. Reid and E. G. Cavalcanti
J. Modern Optics 52, 2245 (2005)
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13. Bright tripartite entanglement in triply concurrent parametric oscillation.
A. S. Bradley, M. K. Olsen, O. Pfister and R. C. Pooser
Phys. Rev. A 72, 053805 (2005)
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12. Properties of the stochastic Gross–Pitaevskii equation: finite temperature Ehrenfest relations and the optimal plane wave representation.
A. S. Bradley, P. B. Blakie and C. W. Gardiner
J. Phys. B: At. Mol. Opt. Phys. 38 4259 (2005)
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11.
Einstein-Podolsky-Rosen correlations via dissociation of a molecular Bose-Einstein condensate.
K. V. Kheruntsyan, M. K. Olsen, and P. D. Drummond,
Phys. Rev. Lett. 95, 150405 (2005)
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10. Phase-space analysis of bosonic spontaneous emission.
M.K. Olsen, L.I. Plimak, S. Rebic, and A.S. Bradley,
Optics Communications 254, 271 (2005)
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9.
Quantum analysis of the nondegenerate optical parametric oscillator with injected signal.
B. Coutinho dos Santos, K. Dechoum, A. Z. Khoury, L. F. da Silva, and M. K. Olsen,
Phys. Rev. A 72, 033820 (2005)
pdf
8.
Universality of Quantum Critical Dynamics in a Planar Optical Parametric Oscillator.
P. D. Drummond and K. Dechoum,
Phys. Rev. Lett. 95, 083601 (2005)
pdf
7.
Quantum phase-space simulations of fermions and bosons.
P. D. Drummond and J. F. Corney,
Computer Physics Communications 169, 412 (2005)
pdf
6.
Entanglement and the Einstein-Podolsky-Rosen paradox with coupled intracavity optical downconverters.
M.K. Olsen and P.D. Drummond,
Phys. Rev. A 71, 053803 (2005)
pdf
5.
Finite temperature correlations and density profiles of an inhomogeneous interacting 1D Bose gas.
K. V. Kheruntsyan, D. M. Gangardt, P. D. Drummond, and G. V. Shlyapnikov,
Phys. Rev. A 71, 053615 (2005)
pdf
4.
Matter-wave amplification and phase-conjugation via stimulated dissociation of a molecular Bose-Einstein condensate.
Karen V. Kheruntsyan,
Phys. Rev. A 71, 053609 (2005)
pdf
3.
Signature of Mott-insulator transition with ultra-cold fermions in a one-dimensional optical lattice.
Xia-Ji Liu, Peter D. Drummond, and Hui Hu,
Phys. Rev. Lett. 94, 136406 (2005)
pdf
2.
Time-Reversal Test for Stochastic Quantum Dynamics
M. R. Dowling, P. D. Drummond, M. J. Davis, and P. Deuar
Phys. Rev. Lett. 94, 130401 (2005)
pdf
1.
Reply to "Comment on `Stimulated Raman adiabatic passage from an atomic to a molecular Bose-Einstein condensate'".
P. D. Drummond, K. V. Kheruntsyan, D. J. Heinzen, and R. H. Wynar,
Phys. Rev. A 71, 017602 (2005)
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2004

13. Analysis of dynamical tunnelling experiments with a Bose-Einstein condensates.
W. K. Hensinger, A. Mouchet, P. S. Julienne, D. Delande, N. R. Heckenberg and H. Rubinsztein-Dunlop.
Phys. Rev. A70, 013408 (2004)
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12. Laser frequency locking by direct measurement of detuning.
A. Ratnapala, C. J. Vale, A. G. White, M. D. Harvey, N. R. Heckenberg and H. Rubinsztein-Dunlop.
Optics Lett. 29, 2704-2706 (2004)
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11. Foil-based atom chip for Bose-Einstein condensates.
C. J. Vale, B. Upcroft, M. J. Davis, N. R. Heckenberg and H. Rubinsztein-Dunlop.
J. Phys. B 37, 2959-2967 (2004)
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10.
Gaussian quantum Monte Carlo methods for fermions and bosons.
J. F. Corney and P. D. Drummond,
Phys. Rev. Lett. 93, 260401 (2004)
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9.
Three-dimensional solitons in coupled atomic-molecular Bose-Einstein condensates.
T. G. Vaughan, K. V. Kheruntsyan, and P. D. Drummond,
Phys. Rev. A 70, 063611 (2004)
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8.
Quantum phase-space analysis of the pendular cavity.
M. K. Olsen, A. B. Melo, K. Dechoum and A. Z. Khoury,
Phys. Rev. A 70, 043815 (2004)
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7.
Critical fluctuations and entanglement in the nondegenerate parametric oscillator.
K. Dechoum, P. D. Drummond, S. Chaturvedi, and M. D. Reid,
Phys. Rev. A 70, 053807 (2004)
pdf
6.
Continuous variable Einstein-Podolsky-Rosen paradox with travelling-wave second harmonic generation.
M. K. Olsen,
Phys. Rev. A 70, 035801 (2004)
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5.
Fock state dynamics in photoassociation of Bose-Einstein condensates.
M. K. Olsen, A. S. Bradley and S. B. Cavalcanti,
Phys. Rev. A 70, 033611 (2004)
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4.
Coherent molecular bound-states of bosons and fermions near a Feshbach resonance.
P. D. Drummond and K. V. Kheruntsyan,
Phys. Rev. A 70, 033609 (2004)
pdf
3.
Gauge Poisson representations for birth/death master equations.
P. D. Drummond,
Eur. Phys. J. B 38, 617 (2004)
pdf
2.
Canonical Bose gas simulations with stochastic gauges.
P. D. Drummond, P. Deuar, and K. V. Kheruntsyan,
Phys. Rev. Lett. 92, 040405 (2004)
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1.
Stochastic gauge: a new technique for quantum simulations.
P. D. Drummond, P. Deuar, J. F. Corney, and K. V. Kheruntsyan,
Proceedingsof the 16th International Conference on Laser Spectroscopy (ICOLS 03), 13-18 July 2003, Tropical North Queensland, Australia (Eds. P. Hannaford, A. Sidorov, H. Bachor, and K. Baldwin, World Scientific, Singapore, 2004, P. 161-170)
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2003

6. Experimental tests of quantum nonlinear dynamics in atom optics.
W. K. Hensinger, N. R. Heckenbergy, G. J. Milburn and H. Rubinsztein-Dunlop.
J. Opt. B: Quantum Semiclass. Opt.,5 R83 (2003).
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5.
Gaussian quantum operator representation for bosons.
J. F. Corney and P. D. Drummond,
Phys. Rev. A 68, 063822 (2003)
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4.
C. W. Gardiner and M. J. Davis, J. Phys. B 36, 4731-4753 (2003); The stochastic Gross-Pitaevskii equation II. pdf
3.
M. J. Davis and S. A. Morgan, Phys. Rev. A 68, 053615 (2003); Microcanonical temperature for a classical field: application to Bose-Einstein condensation.
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2.
K.V. Kheruntsyan, D.M. Gangardt, P.D. Drummond, and G.V. Shlyapnikov, Phys. Rev. Lett. 91, 040403 (2003); Pair correlations in a finite-temperature 1D Bose gas.
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1.
P.D. Drummond and P. Deuar, J. Opt. B: Quantum Semiclass. Opt. 5, S281-S289 (2003); Quantum dynamics with stochastic gauge simulations.
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2002

10.
M.J. Davis, S.A. Morgan and K. Burnett, Phys. Rev. A 66, 053618 (2002); Simulations of thermal Bose fields in the classical limit.
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9.
P. D. Deuar and P. D. Drummond, Phys. Rev. A 66, 033812 (2002); Gauge P-representations for quantum-dynamical problems: Removal of boundary terms.
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8.
K. V. Kheruntsyan and P. D. Drummond, Phys. Rev. A 66, 031602(R) (2002); Quantum correlated twin atomic beams via photo-dissociation of a molecular Bose-Einstein condensate.
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7.
M. K. Olsen, L. I. Plimak, V. I. Kruglov, J. J. Hope, P. D. Drummond, and M. J. Collett, Laser Physics 12, 21 (2002); Dynamics of trapped Bose-Einstein condensates: Beyond the mean-field.
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6.
M. Kö, M.J. Davis, C.W. Gardiner, T.W. Hänsch, and T. Esslinger, Phys. Rev. Lett. 88, 080402 (2002); Growth of Bose-Einstein Condensates from Thermal Vapor.
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5.
M.J. Davis and C.W. Gardiner, J. Phys. B 35, 735 (2002); Growth of a Bose Einstein condensate: a detailed comparison of theory and experiment.
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4.
P.D. Drummond, K.V. Kheruntsyan, D. Heinzen, and R. H. Wynar, Phys. Rev. A 65, 063619, (2002); Stimulated Raman adiabatic passage from an atomic to a molecular Bose-Einstein condensate.
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3.
C. Lamprecht, M. K. Olsen, P. D. Drummond, and H. Ritsch, Phys. Rev. A 65, 053813 (2002); Positive-P and Wigner representations for quantum-optical systems with nonorthogonal modes.
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2.
P. D. Drummond, K. Dechoum, and S. Chatuvedi, Phys. Rev. A 65, 033806 (2002); Critical quantum fluctuations in the degenerate parametric oscillator.
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1.
S. Chatuvedi, K. Dechoum, and P. D. Drummond, Phys. Rev. A 65, 033805 (2002); Limits to squeezing in the degenerate optical parametric oscillator.
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2001

 
15. Dynamical tunneling of ultra-cold atoms.
W. K. Hensinger, H. Häffner, A. Browaeys, N. R. Heckenberg, K. Helmerson, C. McKenzie, G. J. Milburn, W. D. Phillips, S. L. Rolston, H. Rubinsztein-Dunlop, and B. Upcroft.
Nature 412, 52-55, (2001)
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14. Experimental study of the quantum driven pendulum and its classical analogue in atom optics.
W. K. Hensinger, A. G. Truscott, B. Upcroft, M. Hug, H. M. Wiseman, N. R. Heckenberg, and H. Rubinsztein-Dunlop.
Phys. Rev. A 64, 033407 (2001)
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13. Multiple bifurcations in atom optics.
W. K. Hensinger, B. Upcroft, C. A. Holmes, N. R. Heckenberg, G. J. Milburn, and H. Rubinsztein-Dunlop.
Phys. Rev. A 64, 063408 (2001)
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12.
J. R. Anglin, P. D. Drummond and A. Smerzi, Phys. Rev. A 64, 063605 (2001); Exact quantum phase model for mesoscopic Josephson junctions.
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11.
P. Deuar and P. D. Drummond, Computer Physics Communications 142, 442 (2001); Stochastic gauges in quantum dynamics for many-body simulations.
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10.
P. D. Drummond, A. Eleftheriou, K. Huang, and K. V. Kheruntsyan, Phys. Rev. A 63, 053602 (2001); Theory of a mode-locked atom laser with toroidal geometry.
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9.
P. D. Drummond and K. V. Kheruntsyan, Phys. Rev. A 63, 013605 (2001); Asymptotic solutions to the Gross-Pitaevskii gain equation: growth of a Bose-Einstein condensate.
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8.
P. Badziag, P. Deuar, M. Horodecki, P. Horodecki, and R. Horodecki, quant-ph/0107147 (2001); Concurrence in arbitrary dimensions.
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7.
G. R. Collecutt and P. D. Drummond, Computer Physics Communications 142, 219 (2001); xmds: eXtensible multi-dimensional simulator.
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6.
J. F. Corney and P. D. Drummond, JOSA B 18, 153 (2001); Quantum noise in optical fibers. II. Raman jitter in soliton communications.
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5.
J. F. Corney and P. D. Drummond, JOSA B 18, 139 (2001); Quantum noise in optical fibers. I. Stochastic equations.
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4.
M. Hillery and P. D. Drummond, Phys. Rev. A 64, 013815 (2001); Noise-free scattering of the quantized electromagnetic field from a dispersive linear dielectric.
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3.
G. R. Collecutt and P. D. Drummond, Opt. Comm. 198, 439 (2001); Parametric signal regeneration.
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2.
D. Y. Tang, W. S. Man, H. Y. Tam, P. D. Drummond, Phys. Rev. A 64, 033814 (2001); Observation of bound states of solitons in a passively mode-locked fiber laser.
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1.
J. A. Andersen, M. E. J. Friese, A. G. Truscott, Z. Ficek, P. D. Drummond, N. R. Heckenberg, and H. Rubinsztein-Dunlop, Phys. Rev. A 63, 023820 (2001); Light guiding light: Nonlinear refraction in rubidium vapor.
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2000

11. Coherent atomic beam splitter using transients of a chaotic system.
A. G. Truscott, M. E. J. Friese, W. K. Hensinger, H. M. Wiseman, H. Rubinsztein-Dunlop and N. R. Heckenberg.
Phys. Rev. Lett. 84, 4023 (2000)
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10. Atoms in an amplitude modulated standing wave - dynamics and pathways to quantum chaos.
W. K. Hensinger, A. G. Truscott, B. Upcroft, N. R. Heckenberg and H. Rubinsztein-Dunlop.
J. Opt. B,2 659 (2000)
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9.
D. J. Heinzen, R. H. Wynar, P. D. Drummond, and K. V. Kheruntsyan, Phys. Rev. Lett. 84, 5029 (2000);
Superchemistry: dynamics of coupled atomic and molecular Bose condensates.
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8.
K. V. Kheruntsyan and P. D. Drummond, Phys. Rev. A 61, 063816 (2000); Multidimensional quantum solitons with nondegenerate parametric interactions: photonic and Bose-Einstein condensate environments.
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7.
P. Rungta, W. J. Munro, K. Nemoto, P. Deuar, G. J. Milburn, and C. M. Caves, quant-ph/ (2000) (Submitted to Dan Walls Memorial Volume, edited by H. Carmichael, R. Glauber, and M. Scully, to be published by Springer); Qudit Entanglement.
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6.
P. Deuar and W. J. Munro, Phys. Rev. A 62, 042304 (2000); Quantum copying can increase the practically available information.
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5.
P. Deuar, W. J. Munro, and K. Nemoto, J. Opt B: Quantum Semiclass. Opt. 2, 225 (2000); Upper bound on the region of separable states near the maximally mixed state.
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4.
P. Deuar and W. J. Munro, Phys. Rev. A 61, 062304 (2000); Information transfer and fidelity in quantum copiers.
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3.
D. T. Pope, P. D. Drummond, W. J. Munro, Phys. Rev. A 62, 042108 (2000); Disagreement between correlations of quantum mechanics and stochastic electrodynamics in the damped parametric oscillator.
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2.
K. V. Kheruntsyan and K. G. Petrosyan, Phys. Rev. A 62, 015801 (2000); Exact steady-state Wigner function for a nondegenerate parametric oscillator.
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1.
G. R. Collecutt and P. D. Drummond, Opt. Comm. 184, 237-243 (2000); Digital response with femtosecond resolution in an optical AND gate.
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1999

10. Variations of relative line intensity in saturation spectroscopy due to low magnetic fields
W. K. Hensinger, A. G. Truscott, H. Rubinsztein-Dunlop and N. R. Heckenberg.
Optical and Quantum Electronics 31, 391 (1999)
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9.
P. D. Drummond and J. F. Corney, Phys. Rev. A 60, R2661 (1999); Quantum dynamics of evaporatively cooled Bose-Einstein condensates.
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8.
P. D. Drummond, K. V. Kheruntsyan, and H. He, J. Opt. B: Quantum Semiclass. Opt. 1, 387 (1999); Novel solitons in parametric amplifiers and atom lasers.
pdf
7.
P. Deuar and W. J. Munro, Phys. Rev. A 61, R010306 (1999); Improving detectors using entangling quantum copiers.
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6.
A. Gilchrist, P. Deuar, and M. D. Reid, Phys. Rev. A 60, 4259 (1999); Contradiction of quantum mechanics with local hidden variables for quadrature phase measurements on pair-coherent states and squeezed macroscopic superpositions of coherent states.
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5.
P. D. Drummond, Phys. Rev. A 60, R3331 (1999); Dual symmetric lagrangians and conservation laws.
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4.
P. D. Drummond and M. Hillery, Phys. Rev. A 59, 691 (1999); Quantum theory of dispersive electromagnetic modes.
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3.
S. Chaturvedi and P. D. Drummond, Eur. Phys. J. B 59, 251 (1999); Stochastic diagrams for critical point spectra.
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2.
K. V. Kheruntsyan, J. Opt. B: Quantum Semiclass. Opt. 1, 225 (1999); Wigner function for a driven anharmonic oscillator.
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1.
H. He, A. Arraf, C. M. de Sterke, P. D. Drummond, and B. Malomed, Phys. Rev. E 59, 6064 (1999); Theory of modulational instability in Bragg gratings with quadratic nonlinearity.
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1998

7.
P. D. Drummond, K. V. Kheruntsyan, and H. He, Phys. Rev. Lett. 81, 3055 (1998); Coherent molecular solitons in Bose-Einstein Condensates.
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6.
M. J. Steel, M. K. Olsen, L. I. Plimak, P. D. Drummond, S. M. Tan, M. J. Collett, D. F. Walls, and R. Graham, Phys. Rev. A 58, 4824 (1998); Dynamical quantum noise in trapped Bose-Einstein condensates.
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5.
K. V. Kheruntsyan and P. D. Drummond, Phys. Rev. A 58, R2676 (1998); Multidimensional parametric quantum solitons.
pdf
4.
A. Gilchrist, P. Deuar, and M. D. Reid, Phys. Rev. Lett. 80, 3169 (1998); Contradiction of Quantum Mechanics with Local Hidden Variables for Quadrature Phase Amplitude Measurements.
pdf
3.
M. D. Reid and P. Deuar, Ann. Phys 265, 52 (1998); Macroscopic Local Realism: How Do We Define It and Is It Compatible with Quantum Mechanics?
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2.
K. V. Kheruntsyan and P. D. Drummond, Phys. Rev. A 58, 2488 (1998); Three-dimensional quantum solitons with parametric coupling.
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1.
H. He and P. D.Drummond, Phys. Rev. E 58, 5025 (1998); Theory of multidimensional parametric band-gap simultons.
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1997

7.
M. J. Werner and P. D. Drummond, Phys. Rev. A 56, 1508-1518 (1997); Pulsed quadrature-phase squeezing of solitary waves in chi(2) parametric waveguides.
pdf
6.
P. D. Drummond and H. He, Phys. Rev. A 56, R1107-R1109 (1997); Optical mesons.
pdf
5.
A. Gilchrist, C. W. Gardiner, and P. D. Drummond, Phys. Rev. A 55, 3014-3032 (1997); Positive P representation: Application and validity.
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4.
S. Chaturvedi and P. D. Drummond, Phys. Rev. A 55, 912-914 (1997); Macroscopic test of quantum mechanics versus stochastic electrodynamics.
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3.
P. D. Drummond, J. D. Harvey, J. M. Dudley, D. B. Hirst, and S. J. Carter, Phys. Rev. Lett. 78, 836 (1997); Phase waves in mode-locked superfluorescent lasers.
pdf
2.
H. He and P. D. Drummond, Phys. Rev. Lett. 78, 4311-4315 (1997); Ideal Soliton Environment Using Parametric Band Gaps.
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1.
B. Malomed, P. D. Drummond, H. He et al., Phys. Rev. E 56 (4), 4725-4735 (1997); Spatiotemporal solitons in multidimensional optical media with quadratic nonlinearity.
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Authorised by: Karen Kheruntsyan
Maintained by: Paul Schwenn (schwennphysics.uq.edu.au)
Last Updated - 13 April, 2012