Scientific Publications

Displaying 1 - 100 of 126

2024

Momentum-exchange interactions in a Bragg atom interferometer suppress Doppler dephasing
Luo C., H. Zhang, V.P.W. Koh, J.D. Wilson, A. Chu, M.J. Holland, A.M. Rey, and J.K. Thompson, Science 384, 551-556 (2024).
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Reductive Quantum Phase Estimation
Papadopoulos N., J. Reilly, J. Wilson, and M.J. Holland, Submitted (2024).
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2023

Optimal Generators for Quantum Sensing
Reilly J., J. Wilson, S.B. Jäger, C. Wilson, and M.J. Holland, Physical Review Letters 131, 150802 (2023).
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Application of Quantum Optimal Control to Shaken Lattice Interferometry
Shao J., L.-Y. Chih, M. Naris, M.J. Holland, and M. Nicotra, American Control Conference (Acc) 4593-4598 (2023).
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Modeling and Control of Ultracold Atoms Trapped in an Optical Lattice: An Example-driven Tutorial on Quantum Control
Nicotra M., J. Shao, J. Combes, A. Theurkauf, P. Axelrad, L.-Y. Chih, M.J. Holland, A. Zozulya, C. LeDesma, K. Mehling, and D.Z. Anderson, Ieee Control Systems Magazine 43, 28-43 (2023).
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Cavity-Mediated Collective Momentum-Exchange Interactions
Luo C., H. Zhang, V. Koh, J. Wilson, A. Chu, M.J. Holland, A.M. Rey, and J.K. Thompson, Submitted (2023).
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A Machine-Designed Optical Lattice Atom Interferometer
LeDesma C., K. Mehling, J. Shao, J. Wilson, P. Axelrad, M. Nicotra, M.J. Holland, and D.Z. Anderson, Submitted (2023).
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Speeding Up Squeezing with a Periodically Driven Dicke Model
Reilly J., S.B. Jäger, J. Wilson, J. Cooper, S. Eggert, and M.J. Holland, Submitted (2023).
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2022

Beyond one-axis twisting: Simultaneous spin-momentum squeezing
Wilson J., S.B. Jäger, J. Reilly, A. Shankar, M.L. Chiofalo, and M.J. Holland, Physical Review A 106, 043711 (2022).
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Adiabatic Control of Decoherence-Free-Subspaces in an Open Collective System
Reilly J., S.B. Jäger, J. Cooper, and M.J. Holland, Physical Review A 106, 023703 (2022).
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Lindblad master equations for quantum systems coupled to dissipative bosonic modes
Jäger S.B., T. Schmit, G. Morigi, M.J. Holland, and R. Betzholz, Physical Review Letters 129, 063601 (2022).
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Mean-field Floquet theory for a three-level cold-atom laser
Harmon G., J. Reilly, M.J. Holland, and S.B. Jäger, Physical Review A 106, 013706 (2022).
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Entropy transfer from a quantum particle to a classical coherent light field
Bartolotta J.P., S.B. Jäger, J. Reilly, M.A. Norcia, J.K. Thompson, G. Smith, and M.J. Holland, Physical Review Research 4, 013218 (2022).
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How to Train Your Gyro: Reinforcement Learning for Rotation Sensing with a Shaken Optical Lattice
Chih L.-Y., D.Z. Anderson, and M.J. Holland, Submitted (2022).
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2021

Collective emission of an atomic beam into an off-resonant cavity mode
Jäger S.B., H. Liu, J. Cooper, and M.J. Holland, Physical Review A 104, 053705 (2021).
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Quenched Magneto-association of Ultracold Feshbach Molecules in Microgravity
Waiblinger K., J.R. Williams, and J.P. D'Incao, Physical Review A 104, 033310 (2021).
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Reinforcement-learning based matterwave interferometer in a shaken optical lattice
Chih L.-Y., and M.J. Holland, Physical Review Research 3, 033279 (2021).
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Subradiant-to-Subradiant Phase Transition in the Bad Cavity Laser
Shankar A., J. Reilly, S.B. Jäger, and M.J. Holland, Physical Review Letters 127, 073603 (2021).
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Regular and bistable steady-state superradiant phases of an atomic beam traversing an optical cavity
Jäger S.B., H. Liu, A. Shankar, J. Cooper, and M.J. Holland, Physical Review A 103, 013720 (2021).
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Superradiant emission of a thermal atomic beam into an optical cavity
Jäger S.B., H. Liu, J. Cooper, T.L. Nicholson, and M.J. Holland, Physical Review A 104, (2021).
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2020

Rugged mHz-Linewidth Superradiant Laser Driven by a Hot Atomic Beam
Liu H., S.B. Jäger, X. Yu, S. Touzard, A. Shankar, M.J. Holland, and T.L. Nicholson, Physical Review Letters 125, 253602 (2020).
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Broadening of the drumhead mode spectrum due to in-plane thermal fluctuations of two-dimensional trapped ion crystals in a Penning trap
Shankar A., C. Tang, M. Affolter, K. Gilmore, D. Dubin, S. Parker, M.J. Holland, and J.J. Bollinger, Physical Review A 102, 053106 (2020).
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Speeding Up Particle Slowing using Shortcuts to Adiabaticity
Bartolotta J.P., J. Reilly, and M.J. Holland, Physical Review A 102, 043107 (2020).
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Sawtooth Wave Adiabatic Passage in a Magneto-Optical Trap
Bartolotta J.P., and M.J. Holland, Physical Review A 101, 053434 (2020).
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Driving Quantum Correlated Atom-Pairs from a Bose-Einstein Condensate
Chih L.-Y., and M.J. Holland, New Journal Of Physics 22, 033010 (2020).
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Superradiant optomechanical phases of cold atomic gases in optical resonators
Jäger S.B., M.J. Holland, and G. Morigi, Phys. Rev. A 101, 023616 (2020).
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2019

Squeezed state metrology with Bragg interferometers operating in a cavity
Shankar A., L. Salvi, M. Chiofalo, N. Poli, and M.J. Holland, Quantum Science And Technology 4, 045010 (2019).
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Dynamical Phase Transitions to Optomechanical Superradiance
Jäger S.B., J. Cooper, M.J. Holland, and G. Morigi, Physical Review Letters 123, 053601 (2019).
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Continuous Real-Time Tracking of a Quantum Phase Below the Standard Quantum Limit
Shankar A., G.P. Greve, B. Wu, J.K. Thompson, and M.J. Holland, Physical Review Letters 122, 233602 (2019).
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Near Ground-State Cooling of Two-Dimensional Trapped-Ion Crystals with More than 100 Ions
Jordan E., K. Gilmore, A. Shankar, A. Safavi-Naini, J.G. Bohnet, M.J. Holland, and J.J. Bollinger, Physical Review Letters 122, 053603 (2019).
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Modeling near ground-state cooling of two-dimensional ion crystals in a Penning trap using electromagnetically induced transparency
Shankar A., E. Jordan, K. Gilmore, A. Safavi-Naini, J.J. Bollinger, and M.J. Holland, Physical Review A 99, 023409 (2019).
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2018

Laser cooling by sawtooth-wave adiabatic passage
Bartolotta J.P., M.A. Norcia, J.R.K. Cline, J.K. Thompson, and M.J. Holland, Physical Review A 98, (2018).
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Narrow-line laser cooling by adiabatic transfer
Norcia M.A., J.R.K. Cline, J.P. Bartolotta, M.J. Holland, and J.K. Thompson, New J. Phys. 20, 023021 (2018).
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2017

Sub-Doppler laser cooling using electromagnetically induced transparency
He P., P.M. Tengdin, D.Z. Anderson, A.M. Rey, and M.J. Holland, Physical Review A 95, 053403 (2017).
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Steady-state spin synchronization through the collective motion of trapped ions
Shankar A., J. Cooper, J.G. Bohnet, J.J. Bollinger, and M.J. Holland, Physical Review A 95, 033423 (2017).
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2016

Collapse and revival of the monopole mode of a degenerate Bose gas in an isotropic harmonic trap
Straatsma C.J.E., V.E. Colussi, M.J. Davis, D.S. Lobser, M.J. Holland, D.Z. Anderson, H.J. Lewandowski, and E.A. Cornell, Physical Review A 94, 043640 (2016).
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Highlights
Editor’s Suggestion
Supercooling of Atoms in an Optical Resonator
Xu M., S.B. Jäger, S. Schütz, J. Cooper, G. Morigi, and M.J. Holland, Physical Review Letters 116, 153002 (2016).
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2015

Nonlinear spectroscopy of Sr atoms in an optical cavity for laser stabilization
Christensen B.T.R., M.R. Henriksen, S.A. Schäffer, P.G. Westergaard, D.A. Tieri, J. Ye, M.J. Holland, and J.W. Thomsen, Physical Review A 92, 053820 (2015).
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Undamped nonequilibrium dynamics of a nondegenerate Bose gas in a 3D isotropic trap
Colussi V.E., C.J.E. Straatsma, D.Z. Anderson, and M.J. Holland, New Journal Of Physics 17, 103029 (2015).
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Synchronization of interacting quantum dipoles
Zhu B., J. Schachenmayer, M. Xu, F. Herrera, J.G. Restrepo, M.J. Holland, and A.M. Rey, New Journal Of Physics 17, 083063 (2015).
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Laser stabilization using saturated absorption in a cavity-QED system
Tieri D.A., J. Cooper, B.T.R. Christensen, J.W. Thomsen, and M.J. Holland, Physical Review A 92, 013817 (2015).
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Conditional Ramsey Spectroscopy with Synchronized Atoms
Xu M., and M.J. Holland, Physical Review Letters 114, 103601 (2015).
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Observation of Motion-Dependent Nonlinear Dispersion with Narrow-Linewidth Atoms in an Optical Cavity
Westergaard P.G., R. Christensen, D.A. Tieri, R. Matin, J. Cooper, M.J. Holland, J. Ye, and J.W. Thomsen, Physical Review Letters 114, 093002 (2015).
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2014

Synchronization of Two Ensembles of Atoms
Xu M., D.A. Tieri, C. Fine, J.K. Thompson, and M.J. Holland, Physical Review Letters 113, 154101 (2014).
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Suppressing the Loss of Ultracold Molecules Via the Continuous Quantum Zeno Effect
Zhu B., B. Gadway, M. Foss-Feig, J. Schachenmayer, M.L. Wall, K.R.A. Hazzard, B. Yan, S.A. Moses, J.P. Covey, D.S. Jin, and J. Ye, Physical Review Letters 112, 070404 (2014).
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2013

Evaporative cooling of reactive polar molecules confined in a two-dimensional geometry
Zhu B., G. Quéméner, A.M. Rey, and M.J. Holland, Physical Review A 88, 063405 (2013).
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Simulating open quantum systems by applying SU(4) to quantum master equations
Xu M., D.A. Tieri, and M.J. Holland, Physical Review A 87, 062101 (2013).
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Mechanical resonators for storage and transfer of electrical and optical quantum states
McGee S.A., D. Meiser, C.A. Regal, K.W. Lehnert, and M.J. Holland, Physical Review A 87, 053818 (2013).
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A quasi-continuous superradiant Raman laser with < 1 intracavity photon
Bohnet J.G., Z. Chen, J.M. Weiner, K.C. Cox, D. Meiser, M.J. Holland, and J.K. Thompson, Icap 2012 \Textendash 23Rd International Conference On Atomic Physics 57, 03003 (2013).
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2012

Delocalization of ultracold atoms in a disordered potential due to light scattering
Nowak B., J.J. Kinnunen, M.J. Holland, and P. Schlagheck, Physical Review A 86, 043610 (2012).
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A steady-state superradiant laser with less than one intracavity photon
Bohnet J.G., Z. Chen, J.M. Weiner, D. Meiser, M.J. Holland, and J.K. Thompson, Nature 484, 78-81 (2012).
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Two-channel models of the BEC/BCS crossover
Holland M.J., and J. Wachter, Proceedings Of The 2006 International School Of Physics Enrico Fermi Summer School Course Clxiv On "Ultracold Fermi Gases" Volume 164: Ultra-cold Fermi Gases, 351-383 (2012).
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2011

Extreme nonlinear response of ultranarrow optical transitions in cavity QED for laser stabilization
Martin M.J., D. Meiser, J.W. Thomsen, J. Ye, and M.J. Holland, Physical Review A 84, 063813 (2011).
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Resonantly enhanced tunneling and transport of ultracold atoms on tilted optical lattices
Rubbo C., S.R. Manmana, B.M. Peden, M.J. Holland, and A.M. Rey, Physical Review A 84, 033638 (2011).
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2010

Open quantum systems approach to atomtronics
Pepino R.A., J. Cooper, D. Meiser, D.Z. Anderson, and M.J. Holland, Physical Review A 82, 013640 (2010).
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Intensity fluctuations in steady-state superradiance
Meiser D., and M.J. Holland, Physical Review A 81, (2010).
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Steady-state superradiance with alkaline-earth-metal atoms
Meiser D., and M.J. Holland, Physical Review A 81, (2010).
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Atom-Optical Analogs of Electronic Components and Devices
Pepino R.A., J. Cooper, D.Z. Anderson, and M.J. Holland, in Unknown (Imperial College Press, Cambridge, Massachusettslondon, 2010).
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2009

Nondestructive cavity QED probe of Bloch oscillations in a gas of ultracold atoms
Peden B.M., D. Meiser, M. Chiofalo, and M.J. Holland, Physical Review A 80, (2009).
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Atomtronic Circuits of Diodes and Transistors
Pepino R.A., J. Cooper, D.Z. Anderson, and M.J. Holland, Physical Review Letters 103, (2009).
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Publication image.
Prospects for a Millihertz-Linewidth Laser
Meiser D., J. Ye, D. Carlson, and M.J. Holland, Physical Review Letters 102, (2009).
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Robustness of Heisenberg-limited interferometry with balanced Fock states
Meiser D., and M.J. Holland, New Journal Of Physics 11, 033002 (2009).
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Bragg spectroscopy of a strongly interacting Bose-Einstein condensate
Kinnunen J.J., and M.J. Holland, New Journal Of Physics 11, 013030 (2009).
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2008

Spin squeezing in optical lattice clocks via lattice-based QND measurements
Meiser D., J. Ye, and M.J. Holland, New Journal Of Physics 10, 073014 (2008).
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2007

Hall effects in Bose-Einstein condensates in a rotating optical lattice
Bhat R., M. Krämer, J. Cooper, and M.J. Holland, Physical Review A 76, (2007).
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Quasi-angular momentum of Bose and Fermi gases in rotating optical lattices
Peden B.M., R. Bhat, M. Krämer, and M.J. Holland, Journal Of Physics B: Atomic, Molecular And Optical Physics 40, 3725-3744 (2007).
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Reply to “Comment on ‘Nonlinear band structure in Bose-Einstein condensates: Nonlinear Schrödinger equation with a Kronig-Penney potential’ ”
Seaman B.T., L.D. Carr, and M.J. Holland, Physical Review A 76, (2007).
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Atomtronics: Ultracold-atom analogs of electronic devices
Seaman B.T., M. Krämer, D.Z. Anderson, and M.J. Holland, Physical Review A 75, (2007).
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2006

Quantized vortex states of strongly interacting bosons in a rotating optical lattice
Bhat R., B.M. Peden, B.T. Seaman, M. Krämer, L.D. Carr, and M.J. Holland, Physical Review A 74, (2006).
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Released Momentum Distribution of a Fermi Gas in the BCS-BEC Crossover
Chiofalo M., S. Giorgini, and M.J. Holland, Physical Review Letters 97, (2006).
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Bose-Einstein Condensates in Rotating Lattices
Bhat R., M.J. Holland, and L.D. Carr, Physical Review Letters 96, (2006).
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A hemispherical, high-solid-angle optical micro-cavity for cavity-QED studies
Cui G., J.M. Hannigan, R. Loeckenhoff, F.M. Matinaga, M.G. Raymer, S.G. Bhongale, M.J. Holland, S. Mosor, S. Chatterjee, H.M. Gibbs, and G. Khitrova, Optics Express 14, 2289 (2006).
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2005

Effect of a potential step or impurity on the Bose-Einstein condensate mean field
Seaman B.T., L.D. Carr, and M.J. Holland, Physical Review A 71, (2005).
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Momentum Distribution of a Fermi Gas of Atoms in the BCS-BEC Crossover
Regal C.A., M. Greiner, S. Giorgini, M.J. Holland, and D.S. Jin, Physical Review Letters 95, 250404 (2005).
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Macroscopic quantum tunnelling of Bose-Einstein condensates in a finite potential well
Carr L.D., M.J. Holland, and B.A. Malomed, Journal Of Physics B: Atomic, Molecular And Optical Physics 38, 3217-3231 (2005).
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Period doubling, two-color lattices, and the growth of swallowtails in Bose-Einstein condensates
Seaman B.T., L.D. Carr, and M.J. Holland, Physical Review A 72, (2005).
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Quantum phase transitions in the Fermi-Bose Hubbard model
Carr L.D., and M.J. Holland, Physical Review A 72, (2005).
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The nature of superfluidity in ultracold gases near Feshbach resonances
Holland M.J., C. Menotti, and L. Viverit, in Aip (AIP, Rio De Janeiro (Brazil), 2005), pp. 238-245.
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Nonlinear band structure in Bose-Einstein condensates: Nonlinear Schrödinger equation with a Kronig-Penney potential
Seaman B.T., L.D. Carr, and M.J. Holland, Physical Review A 71, (2005).
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2004

End-point thermodynamics of an atomic Fermi gas subject to a Feshbach resonance
Carr L.D., R. Chiaramonte, and M.J. Holland, Physical Review A 70, (2004).
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Nature of superfluidity in ultracold Fermi gases near Feshbach resonances
Stajic J., J.N. Milstein, Q. Chen, M. Chiofalo, M.J. Holland, and K. Levin, Physical Review A 69, (2004).
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Condensed-matter physics: Atomic beads on strings of light
Holland M.J., Nature 429, 251-253 (2004).
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Holland and Burnett Reply:
Holland M.J., and K. Burnett, Physical Review Letters 92, (2004).
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Resonant formation of strongly correlated paired states in rotating Bose gases
Bhongale S.G., J.N. Milstein, and M.J. Holland, Physical Review A 69, (2004).
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Superfluidity of an Atomic Fermi Gas near the Unitarity Limit
De Palo S., M. Chiofalo, M.J. Holland, and S. Kokkelmans, Laser Physics 15, 376-382 (2004).
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Resonance effects on the crossover of bosonic to fermionic superfluidity
De Palo S., M. Chiofalo, M.J. Holland, and S. Kokkelmans, Physics Letters A 327, 490-499 (2004).
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Feshbach Resonances in Dilute Quantum Gases
Holland M.J., in Unknown (World Scientific Publishing Co. Pte. Ltd., Palm Cove, Far North Queensland, Australiasingapore, 2004), pp. 212-219.
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2003

Feshbach resonances and collapsing Bose-Einstein condensates
Milstein J.N., C. Menotti, and M.J. Holland, New Journal Of Physics 5, 52-52 (2003).
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2002

Memory effects and conservation laws in the quantum kinetic evolution of a dilute Bose gas
Bhongale S.G., R. Walser, and M.J. Holland, Physical Review A 66, (2002).
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Ramsey Fringes in a Bose-Einstein Condensate between Atoms and Molecules
Kokkelmans S., and M.J. Holland, Physical Review Letters 89, (2002).
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Resonance theory of the crossover from Bardeen-Cooper-Schrieffer superfluidity to Bose-Einstein condensation in a dilute Fermi gas
Milstein J.N., S. Kokkelmans, and M.J. Holland, Physical Review A 66, (2002).
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Resonance superfluidity: Renormalization of resonance scattering theory
Kokkelmans S., J.N. Milstein, M. Chiofalo, R. Walser, and M.J. Holland, Physical Review A 65, (2002).
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Erratum: Equivalence of kinetic theories of Bose-Einstein condensation [Phys. Rev. A 64, 053612 (2001)]
Wachter J., R. Walser, J. Cooper, and M.J. Holland, Physical Review A 65, (2002).
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Signatures of Resonance Superfluidity in a Quantum Fermi Gas
Chiofalo M., S. Kokkelmans, J. Milstein, and M.J. Holland, Physical Review Letters 88, (2002).
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Resonance Superfluidity in a Quantum Degenerate Fermi Gas
Kokkelmans S., M.J. Holland, R. Walser, and M. Chiofalo, in Unknown (World Scientific Publishing Co. Pte. Ltd., Snowbird, Utah, Usasingapore, 2002).
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Condensates on crest of a wave
Holland M.J., Physics World 19, 19\textendash20 (2002).
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2001

Equivalence of kinetic theories of Bose-Einstein condensation
Wachter J., R. Walser, J. Cooper, and M.J. Holland, Physical Review A 64, (2001).
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Resonance superfluidity in a quantum degenerate Fermi gas
Kokkelmans S., M.J. Holland, R. Walser, and M. Chiofalo, Physical Review Letters 87, 120406 (2001).
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Quantum Kinetic Theory for a Bose-Einstein Condensed Alkali Gas
Holland M.J., J. Cooper, and R. Walser, International Journal Of Modern Physics B 15, 1641-1650 (2001).
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Formation of Pairing Fields in Resonantly Coupled Atomic and Molecular Bose-Einstein Condensates
Holland M.J., J. Park, and R. Walser, Physical Review Letters 86, 1915-1918 (2001).
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