We show that in a quantum system evolving unitarily under a stochastic quantum circuit the notions of irreversibility, universality of computation, and entanglement are closely related. As the state evolves from an initial product state, it gets asymptotically maximally entangled. We define irreversibility as the failure of searching for a disentangling circuit using a Metropolis-like algorithm. We show that irreversibility corresponds to Wigner-Dyson statistics in the level spacing of the entanglement eigenvalues, and that this is obtained from a quantum circuit made from a set of universal gates for quantum computation. If, on the other hand, the system is evolved with a non-universal set of gates, the statistics of the entanglement level...
Monitored quantum circuits can exhibit an entanglement transition as a function of the rate of measu...
Quantum quench is a non-equilibrium process where the Hamiltonian is suddenly changed during the qua...
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...
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...
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...
Entanglement is the defining characteristic of quantum mechanics. Bipartite entanglement is characte...
We relate the problem of irreversibility of entanglement with the recently defined measures of quant...
The central philosophy of statistical mechanics (stat-mech) and random-matrix theory of complex syst...
A satisfactory understanding of macroscopic irreversibility has remained elusive since the advent of...
Random Clifford circuits doped with non Clifford gates exhibit transitions to universal entanglement...
We investigate the measurement-induced entanglement transition in quantum circuits built upon Dyson'...
We formulate a semi-classical circuit model to clarify the role of quantum entanglement in the recen...
Entanglement is arguably the most distinctive feature of quantum mechanics. Since the quantum theory...
Monitored quantum circuits can exhibit an entanglement transition as a function of the rate of measu...
Quantum quench is a non-equilibrium process where the Hamiltonian is suddenly changed during the qua...
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...
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...
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...
Entanglement is the defining characteristic of quantum mechanics. Bipartite entanglement is characte...
We relate the problem of irreversibility of entanglement with the recently defined measures of quant...
The central philosophy of statistical mechanics (stat-mech) and random-matrix theory of complex syst...
A satisfactory understanding of macroscopic irreversibility has remained elusive since the advent of...
Random Clifford circuits doped with non Clifford gates exhibit transitions to universal entanglement...
We investigate the measurement-induced entanglement transition in quantum circuits built upon Dyson'...
We formulate a semi-classical circuit model to clarify the role of quantum entanglement in the recen...
Entanglement is arguably the most distinctive feature of quantum mechanics. Since the quantum theory...
Monitored quantum circuits can exhibit an entanglement transition as a function of the rate of measu...
Quantum quench is a non-equilibrium process where the Hamiltonian is suddenly changed during the qua...
The apparent difficulty in recovering classical nonlinear dynamics and chaos from standard quantum m...