We study the problem of irreversibility when the dynamical evolution of a many-body system is described by a stochastic quantum circuit. Such evolution is more general than a Hamiltonian one, and since energy levels are not well defined, the well-established connection between the statistical fluctuations of the energy spectrum and irreversibility cannot be made. We show that the entanglement spectrum provides a more general connection. Irreversibility is marked by a failure of a disentangling algorithm and is preceded by the appearance of Wigner-Dyson statistical fluctuations in the entanglement spectrum. This analysis can be done at the wave-function level and offers an alternative route to study quantum chaos and quantum integrability. ©...
A comprehensive understanding of chaos in quantum systems remains elusive. In this dissertation, we ...
Many-body quantum systems are notoriously hard to study theoretically due to the exponential growth ...
The central philosophy of statistical mechanics (stat-mech) and random-matrix theory of complex syst...
We study the problem of irreversibility when the dynamical evolution of a many-body system is descri...
We study the problem of irreversibility when the dynamical evolution of a many-body system is descri...
We show that in a quantum system evolving unitarily under a stochastic quantum circuit the notions o...
We show that in a quantum system evolving unitarily under a stochastic quantum circuit the notions o...
Entanglement is the defining characteristic of quantum mechanics. Bipartite entanglement is characte...
We characterize the early stages of the approach to equilibrium in isolated quantum systems through ...
We study the non-equilibrium dynamics of an isolated bipartite quantum system, the sunburst quantum ...
Quantum quench is a non-equilibrium process where the Hamiltonian is suddenly changed during the qua...
A satisfactory understanding of macroscopic irreversibility has remained elusive since the advent of...
Characterizing how entanglement grows with time in a many-body system, for example, after a quantum ...
Characterizing how entanglement grows with time in a many-body system, for example, after a quantum ...
We study chaos and scrambling in unitary channels by considering their entanglement properties as st...
A comprehensive understanding of chaos in quantum systems remains elusive. In this dissertation, we ...
Many-body quantum systems are notoriously hard to study theoretically due to the exponential growth ...
The central philosophy of statistical mechanics (stat-mech) and random-matrix theory of complex syst...
We study the problem of irreversibility when the dynamical evolution of a many-body system is descri...
We study the problem of irreversibility when the dynamical evolution of a many-body system is descri...
We show that in a quantum system evolving unitarily under a stochastic quantum circuit the notions o...
We show that in a quantum system evolving unitarily under a stochastic quantum circuit the notions o...
Entanglement is the defining characteristic of quantum mechanics. Bipartite entanglement is characte...
We characterize the early stages of the approach to equilibrium in isolated quantum systems through ...
We study the non-equilibrium dynamics of an isolated bipartite quantum system, the sunburst quantum ...
Quantum quench is a non-equilibrium process where the Hamiltonian is suddenly changed during the qua...
A satisfactory understanding of macroscopic irreversibility has remained elusive since the advent of...
Characterizing how entanglement grows with time in a many-body system, for example, after a quantum ...
Characterizing how entanglement grows with time in a many-body system, for example, after a quantum ...
We study chaos and scrambling in unitary channels by considering their entanglement properties as st...
A comprehensive understanding of chaos in quantum systems remains elusive. In this dissertation, we ...
Many-body quantum systems are notoriously hard to study theoretically due to the exponential growth ...
The central philosophy of statistical mechanics (stat-mech) and random-matrix theory of complex syst...