I employ random-matrix methods to set up and solve statistical models of noisy nonunitary dynamics that appear in the context of monitored quantum systems. The models cover a range of scenarios combining random dynamics and measurements of variable strength of one or several qubits. The combined dynamics drive the system into states whose statistics reflect the competition of randomizing unitary evolution and the measurement-induced backaction collapsing the state. These effects are mediated by entanglement, as I describe in detail by analytical results. For the paradigmatic case of monitoring via a single designated qubit, this reveals a simple statistical mechanism, in which the monitoring conditions the state of the monitored qubit, whic...
We solve a minimal model for an ergodic phase in a spatially extended quantum many-body system. The ...
Many-body quantum systems are notoriously hard to study theoretically due to the exponential growth...
We consider a model of monitored quantum dynamics with quenched spatial randomness: specifically, ra...
I employ random-matrix methods to set up and solve statistical models of noisy nonunitary dynamics t...
The central philosophy of statistical mechanics (stat-mech) and random-matrix theory of complex syst...
We investigate the measurement-induced entanglement transition in quantum circuits built upon Dyson'...
Many-body quantum systems are notoriously hard to study theoretically due to the exponential growth ...
In the context of unitary evolution of a generic quantum system interrupted at random times with non...
We study the time evolution operator in a family of local quantum circuits with random �elds in a �x...
We consider the dynamics of continuously measured many-body chaotic quantum systems. Focusing on the...
We explore quantum chaos diagnostics of variational circuit states at random parameters and study th...
Quantum theory posits that measurements are invasive: It describes an interactive process, mediating...
Statistical mechanics is founded on the assumption that all accessible configurations of a system ar...
Increasingly sophisticated programmable quantum simulators and quantum computers are opening unprece...
We investigate the asymptotic dynamics of quantum networks under repeated applications of random uni...
We solve a minimal model for an ergodic phase in a spatially extended quantum many-body system. The ...
Many-body quantum systems are notoriously hard to study theoretically due to the exponential growth...
We consider a model of monitored quantum dynamics with quenched spatial randomness: specifically, ra...
I employ random-matrix methods to set up and solve statistical models of noisy nonunitary dynamics t...
The central philosophy of statistical mechanics (stat-mech) and random-matrix theory of complex syst...
We investigate the measurement-induced entanglement transition in quantum circuits built upon Dyson'...
Many-body quantum systems are notoriously hard to study theoretically due to the exponential growth ...
In the context of unitary evolution of a generic quantum system interrupted at random times with non...
We study the time evolution operator in a family of local quantum circuits with random �elds in a �x...
We consider the dynamics of continuously measured many-body chaotic quantum systems. Focusing on the...
We explore quantum chaos diagnostics of variational circuit states at random parameters and study th...
Quantum theory posits that measurements are invasive: It describes an interactive process, mediating...
Statistical mechanics is founded on the assumption that all accessible configurations of a system ar...
Increasingly sophisticated programmable quantum simulators and quantum computers are opening unprece...
We investigate the asymptotic dynamics of quantum networks under repeated applications of random uni...
We solve a minimal model for an ergodic phase in a spatially extended quantum many-body system. The ...
Many-body quantum systems are notoriously hard to study theoretically due to the exponential growth...
We consider a model of monitored quantum dynamics with quenched spatial randomness: specifically, ra...