The dynamics of quantum phase transitions poses one of the most challenging problems in modern many-body physics. Here, we study a prototypical example in a clean and well-controlled ultracold atom setup by observing the emergence of coherence when crossing the Mott insulator to superfluid quantum phase transition. In the one-dimensional Bose-Hubbard model, we find perfect agreement between experimental observations and numerical simulations for the resulting coherence length. We thereby perform a largely certified analogue quantum simulation of this strongly correlated system reaching beyond the regime of free quasiparticles. Experimentally, we additionally explore the emergence of coherence in higher dimensions where no classical simulati...
Thermal fluctuations tend to destroy long-range phase correlations. Consequently, bosons in a lattic...
By means of an adapted mean-field expansion for large fillings n 1, we study the evolution of quantu...
We analyze the stability of superfluid currents in a system of strongly interacting ultracold atoms ...
The dynamics of quantum phase transitions pose one of the most challenging problems in modern many-b...
5 págs.; 4 figs.; complementary material© 2015, National Academy of Sciences. All rights reserved. T...
The ground state of the one-dimensional Bose-Hubbard model at unit filling undergoes the Mott-superf...
The ground state of the one-dimensional Bose-Hubbard model at unit filling undergoes the Mott-superf...
The understanding of quantum many-body physics is the key to develop new quantum technologies includ...
The formation of an equilibrium state from an uncorrelated thermal one through the dynamical crossin...
Quantum coherence will undoubtedly play a fundamental role in understanding the dynamics of quantum ...
Non-equilibrium dynamics of an isolated quantum system driven through a quantum critical point shows...
Non-equilibrium dynamics of an isolated quantum system driven through a quantum critical point shows...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
Quantum phase transitions (QPTs) involve transformations between different states of matter that are...
Thermal fluctuations tend to destroy long-range phase correlations. Consequently, bosons in a lattic...
By means of an adapted mean-field expansion for large fillings n 1, we study the evolution of quantu...
We analyze the stability of superfluid currents in a system of strongly interacting ultracold atoms ...
The dynamics of quantum phase transitions pose one of the most challenging problems in modern many-b...
5 págs.; 4 figs.; complementary material© 2015, National Academy of Sciences. All rights reserved. T...
The ground state of the one-dimensional Bose-Hubbard model at unit filling undergoes the Mott-superf...
The ground state of the one-dimensional Bose-Hubbard model at unit filling undergoes the Mott-superf...
The understanding of quantum many-body physics is the key to develop new quantum technologies includ...
The formation of an equilibrium state from an uncorrelated thermal one through the dynamical crossin...
Quantum coherence will undoubtedly play a fundamental role in understanding the dynamics of quantum ...
Non-equilibrium dynamics of an isolated quantum system driven through a quantum critical point shows...
Non-equilibrium dynamics of an isolated quantum system driven through a quantum critical point shows...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
For a system at a temperature of absolute zero, all thermal fluctuations are frozen out, while quant...
Quantum phase transitions (QPTs) involve transformations between different states of matter that are...
Thermal fluctuations tend to destroy long-range phase correlations. Consequently, bosons in a lattic...
By means of an adapted mean-field expansion for large fillings n 1, we study the evolution of quantu...
We analyze the stability of superfluid currents in a system of strongly interacting ultracold atoms ...