We propose a method, based on matrix product states, for studying the time evolution of many-body quantum lattice systems under continuous and site-resolved measurement. Both the frequency and the strength of generalized measurements can be varied within our scheme, thus allowing us to explore the corresponding two-dimensional phase diagram. The method is applied to one-dimensional chains of nearest-neighbor interacting hard-core bosons. A transition from an entangling to a disentangling (area-law) phase is found. However, by resolving time-dependent density correlations in the monitored system, we find important differences between different regions at the phase boundary. In particular, we observe a peculiar phenomenon of measurement-induc...
Generic many-body systems coupled to an environment lose their quantum entanglement due to decoheren...
We propose a spatio-temporal characterization of the entanglement dynamics in many-body localized (M...
Repeated measurements can induce entanglement phase transitions in the dynamics of quantum systems. ...
We propose a method, based on matrix product states, for studying the time evolution of many-body ...
Entanglement is one of the most intriguing features of quantum mechanics. It describes non-local cor...
We explain how to apply a Gaussian-preserving operator to a fermionic Gaussian state. We use this me...
Monitored quantum system with measurements can undergo dynamical phase transitions in the entangleme...
Ergodic quantum many-body systems undergoing unitary dynamics evolve towards increasingly entangled ...
In this paper we continue to explore "hybrid" quantum circuit models in one-dimension with both unit...
We consider recent results on the use of the single-site entanglement measure for identifying and ch...
We study the dynamics of entanglement in the quantum Ising chain with dephasing dissipation in a Lin...
We study the statistical properties of a single free quantum particle evolving coherently on a discr...
Many-body unitary dynamics interspersed with repeated measurements display a rich phenomenology hall...
We study the time evolution of bi- and tripartite operator mutual information of the time-evolution ...
A prerequisite for the comprehensive understanding of many-body quantum systems is a characterizatio...
Generic many-body systems coupled to an environment lose their quantum entanglement due to decoheren...
We propose a spatio-temporal characterization of the entanglement dynamics in many-body localized (M...
Repeated measurements can induce entanglement phase transitions in the dynamics of quantum systems. ...
We propose a method, based on matrix product states, for studying the time evolution of many-body ...
Entanglement is one of the most intriguing features of quantum mechanics. It describes non-local cor...
We explain how to apply a Gaussian-preserving operator to a fermionic Gaussian state. We use this me...
Monitored quantum system with measurements can undergo dynamical phase transitions in the entangleme...
Ergodic quantum many-body systems undergoing unitary dynamics evolve towards increasingly entangled ...
In this paper we continue to explore "hybrid" quantum circuit models in one-dimension with both unit...
We consider recent results on the use of the single-site entanglement measure for identifying and ch...
We study the dynamics of entanglement in the quantum Ising chain with dephasing dissipation in a Lin...
We study the statistical properties of a single free quantum particle evolving coherently on a discr...
Many-body unitary dynamics interspersed with repeated measurements display a rich phenomenology hall...
We study the time evolution of bi- and tripartite operator mutual information of the time-evolution ...
A prerequisite for the comprehensive understanding of many-body quantum systems is a characterizatio...
Generic many-body systems coupled to an environment lose their quantum entanglement due to decoheren...
We propose a spatio-temporal characterization of the entanglement dynamics in many-body localized (M...
Repeated measurements can induce entanglement phase transitions in the dynamics of quantum systems. ...