Scrambling in many-body quantum systems causes initially local observables to spread uniformly over the whole available Hilbert space under unitary dynamics, which in lattice systems causes exponential suppression of dynamical correlation functions with system size. Here, we present a perturbed free quantum circuit model, in which ergodicity is induced by an impurity interaction placed on the system's boundary, that allows for demonstrating the underlying mechanism. This is achieved by mapping dynamical correlation functions of local operators acting at the boundary to a partition function with complex weights defined on a two dimensional lattice with a helical topology. We evaluate this partition function in terms of transfer matrices, whi...
We study the time evolution operator in a family of local quantum circuits with random �elds in a �x...
We study the time-evolution operator in a family of local quantum circuits with random fields in a f...
Phenomena in quantum chaotic systems such as spectral fluctuations are known to be described remark...
Chaos sets a fundamental limit to quantum-information processing schemes. We study the onset of chao...
We consider the statistical properties of eigenstates of the time-evolution operator in chaotic many...
We introduce a model of non-unitary quantum dynamics that exhibits infinitely long-lived discrete sp...
We investigate many-body dynamics where the evolution is governed by unitary circuits through the le...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
We study many-body quantum dynamics using Floquet quantum circuits in one space dimension as simple ...
We study unitary evolution of bipartite entanglement in a circuit with nearest-neighbor random gates...
We study the time evolution operator in a family of local quantum circuits with random �elds in a �x...
We study the time-evolution operator in a family of local quantum circuits with random fields in a f...
Phenomena in quantum chaotic systems such as spectral fluctuations are known to be described remark...
Chaos sets a fundamental limit to quantum-information processing schemes. We study the onset of chao...
We consider the statistical properties of eigenstates of the time-evolution operator in chaotic many...
We introduce a model of non-unitary quantum dynamics that exhibits infinitely long-lived discrete sp...
We investigate many-body dynamics where the evolution is governed by unitary circuits through the le...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
Quantum chaotic interacting N-particle systems are assumed to show fast and irreversible spreading o...
We study many-body quantum dynamics using Floquet quantum circuits in one space dimension as simple ...
We study unitary evolution of bipartite entanglement in a circuit with nearest-neighbor random gates...
We study the time evolution operator in a family of local quantum circuits with random �elds in a �x...
We study the time-evolution operator in a family of local quantum circuits with random fields in a f...
Phenomena in quantum chaotic systems such as spectral fluctuations are known to be described remark...