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Critical behavior developed near a quantum phase transition, interesting in its own right, offers exciting opportunities to explore the universality of strongly-correlated systems near the ground state.
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Quantum magnetism and criticality
Sachdev S 2008 · 2008
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Fast, runaway evaporative cooling to Bose-Einstein condensation in optical traps
Hung C-L, Zhang X, Gemelke N, and Chin C 2008 · 2008
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Monte Carlo study of the two-dimensional Bose-Hubbard model
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Entropy and the Time Evolution of Macroscopic Systems
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Breakdown of the adiabatic limit in low-dimensional gapless systems
Polkovnikov A and Gritsev V 2008 · 2008
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Thermalization and its mechanism for generic isolated quantum systems
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Techniques to measure quantum criticality in cold atoms
Hazzard K R A and Mueller E J 2010 · 2010
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Quantum criticality from in-situ
Fang S, Chung C-M, Ma P-N, Cheng P and Wang D-W 2010 · 2010
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Slow mass transport and statistical evolution of an atomic gas across the superfluid-Mott insulator transition
Hung C L, Zhang X, Gemelke N, and Chin C 2010 · 2010
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Local versus global equilibration near the bosonic Mott-superfluid transition
Natu S S, Hazzard K R A and Mueller E J 2010 · 2010
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Quench dynamics near a quantum critical point
Grandi C D, Gritsev V and Polkovnikov A 2010 · 2010
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Observation of scale invariance and universality in two-dimensional Bose gases
Hung C-L, Zhang X, Gemelke N and Chin C 2010 · 2010
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Obtaining the phase diagram and thermodynamic quantities of bulk systems from the densities of trapped gases
Ho T-L and Zhou Q 2010 · 2010
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private communication
Zhou Q 2010 · 2010
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