In recent times it has been observed that signatures of equilibrium quantum criticality surprisingly show up in many-body systems which are manifestly far from equilibrium. We explore such scenarios in interacting spin systems subject to a quench and develop a robust method to systematically probe ground state critical physics through nonequilibrium post-quench dynamics. Analyzing late-time behavior of finite string-like observables, we find emerging sharp signatures of equilibrium criticality. Specifically, these observables accurately detect equilibrium critical points and universal scaling exponents after long times following a quench. This happens despite the fact that the analyzed systems are strongly chaotic/ergodic and is interesting...
We give an overview of the scaling of density of quasi-particles and excess energy (heat) for nearly...
We unveil the role of the long time average of Loschmidt echo in the characterization of nonequilibr...
In this work we develop the theory of the Loschmidt echo and dynamical phase transitions in non-inte...
We analyze the behavior of steady-state quantum correlations (QCs) in the spin-1/2 transverse field ...
CITATION: Karl, M., et al. 2017. Universal equilibrium scaling functions at short times after a quen...
Quantum phase transitions are central to our understanding of why matter at very low temperatures ca...
We study the out-of-equilibrium dynamics of one-dimensional quantum Ising-like systems, arising from...
Quantum quench is a non-equilibrium process where the Hamiltonian is suddenly changed during the qua...
We demonstrate that in a class of disordered quantum systems the dynamical partition function is not...
The dynamical quantum phase transition is characterized by the emergence of nonanalytic behaviors in...
The transition between distinct phases of matter is characterized by the nature of fluctuations near...
We investigate the emergence of universal dynamical scaling in quantum critical spin systems adiabat...
We explore the robustness of universal dynamical scaling behavior in a quantum system near criticali...
We present a formulation for investigating quench dynamics across quantum phase transitions in the p...
Using the time-dependent Lanczos method, we study the non-equilibrium dynamics of the one-dimensiona...
We give an overview of the scaling of density of quasi-particles and excess energy (heat) for nearly...
We unveil the role of the long time average of Loschmidt echo in the characterization of nonequilibr...
In this work we develop the theory of the Loschmidt echo and dynamical phase transitions in non-inte...
We analyze the behavior of steady-state quantum correlations (QCs) in the spin-1/2 transverse field ...
CITATION: Karl, M., et al. 2017. Universal equilibrium scaling functions at short times after a quen...
Quantum phase transitions are central to our understanding of why matter at very low temperatures ca...
We study the out-of-equilibrium dynamics of one-dimensional quantum Ising-like systems, arising from...
Quantum quench is a non-equilibrium process where the Hamiltonian is suddenly changed during the qua...
We demonstrate that in a class of disordered quantum systems the dynamical partition function is not...
The dynamical quantum phase transition is characterized by the emergence of nonanalytic behaviors in...
The transition between distinct phases of matter is characterized by the nature of fluctuations near...
We investigate the emergence of universal dynamical scaling in quantum critical spin systems adiabat...
We explore the robustness of universal dynamical scaling behavior in a quantum system near criticali...
We present a formulation for investigating quench dynamics across quantum phase transitions in the p...
Using the time-dependent Lanczos method, we study the non-equilibrium dynamics of the one-dimensiona...
We give an overview of the scaling of density of quasi-particles and excess energy (heat) for nearly...
We unveil the role of the long time average of Loschmidt echo in the characterization of nonequilibr...
In this work we develop the theory of the Loschmidt echo and dynamical phase transitions in non-inte...