We study quenches in integrable spin-1/2 chains in which we evolve the ground state of the antiferromagnetic Ising model with the anisotropic Heisenberg Hamiltonian. For this nontrivially interacting situation, an application of the first-principles-based quench-action method allows us to give an exact description of the postquench steady state in the thermodynamic limit. We show that a generalized Gibbs ensemble, implemented using all known local conserved charges, fails to reproduce the exact quench-action steady state and to correctly predict postquench equilibrium expectation values of physical observables. This is supported by numerical linked-cluster calculations within the diagonal ensemble in the thermodynamic limit
We investigate the out-of-equilibrium dynamics of the one-dimensional quantum Ising model after a su...
We investigate the out-of-equilibrium dynamics of the one-dimensional quantum Ising model after a su...
We consider the time evolution after quantum quenches in the spin-1/2 Heisenberg XXZ quantum spin ch...
Abstract. The relaxation after a quantum quench from the Néel state to the anisotropic Heisenberg m...
In integrable many-particle systems, it is widely believed that the stationary state reached at late...
In integrable many-particle systems, it is widely believed that the stationary state reached at late...
The study of quantum quenches in integrable systems has significantly advanced with the introduction...
We consider the problem of constructing the stationary state following a quantum quench, using the e...
We consider the problem of constructing the stationary state following a quantum quench, using the e...
We consider the problem of constructing the stationary state following a quantum quench, using the e...
We consider the problem of constructing the stationary state following a quantum quench, using the e...
We review the dynamics after quantum quenches in integrable quantum spin chains. We give a pedagogic...
We review the dynamics after quantum quenches in integrable quantum spin chains. We give a pedagogic...
We review the dynamics after quantum quenches in integrable quantum spin chains. We give a pedagogic...
We consider the time evolution after quantum quenches in the spin-1/2 Heisenberg XXZ quantum spin ch...
We investigate the out-of-equilibrium dynamics of the one-dimensional quantum Ising model after a su...
We investigate the out-of-equilibrium dynamics of the one-dimensional quantum Ising model after a su...
We consider the time evolution after quantum quenches in the spin-1/2 Heisenberg XXZ quantum spin ch...
Abstract. The relaxation after a quantum quench from the Néel state to the anisotropic Heisenberg m...
In integrable many-particle systems, it is widely believed that the stationary state reached at late...
In integrable many-particle systems, it is widely believed that the stationary state reached at late...
The study of quantum quenches in integrable systems has significantly advanced with the introduction...
We consider the problem of constructing the stationary state following a quantum quench, using the e...
We consider the problem of constructing the stationary state following a quantum quench, using the e...
We consider the problem of constructing the stationary state following a quantum quench, using the e...
We consider the problem of constructing the stationary state following a quantum quench, using the e...
We review the dynamics after quantum quenches in integrable quantum spin chains. We give a pedagogic...
We review the dynamics after quantum quenches in integrable quantum spin chains. We give a pedagogic...
We review the dynamics after quantum quenches in integrable quantum spin chains. We give a pedagogic...
We consider the time evolution after quantum quenches in the spin-1/2 Heisenberg XXZ quantum spin ch...
We investigate the out-of-equilibrium dynamics of the one-dimensional quantum Ising model after a su...
We investigate the out-of-equilibrium dynamics of the one-dimensional quantum Ising model after a su...
We consider the time evolution after quantum quenches in the spin-1/2 Heisenberg XXZ quantum spin ch...