Using quantum Monte Carlo, we study the nonequilibrium transport of magnetization in large open strongly correlated quantum spin-12 systems driven by purely dissipative processes that conserve the uniform or staggered magnetization, disregarding unitary Hamiltonian dynamics. We prepare both a low-temperature Heisenberg ferromagnet and an antiferromagnet in two parts of the system that are initially isolated from each other. We then bring the two subsystems in contact and study their real-time dissipative dynamics for different geometries. The flow of the uniform or staggered magnetization from one part of the system to the other is described by a diffusion equation that can be derived analytically
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
Using the adaptive time-dependent density matrix renormalization group method, we numerically study ...
Understanding (i) the emergence of diffusion from truly microscopic principles continues to be a maj...
Using quantum Monte Carlo, we study the nonequilibrium transport of magnetization in large open stro...
We study the real-time evolution of large open quantum spin systems in two spatial dimensions, whose...
We consider a large quantum system with spins 12 whose dynamics is driven entirely by measurements o...
We develop a real-time full configuration-interaction quantum Monte Carlo approach to model driven-d...
We study experimentally the far-from-equilibrium dynamics in ferromagnetic Heisenberg quantum magnet...
15 pagesInternational audienceThe Lindblad dynamics with dephasing in the bulk and magnetization-dri...
Based on the works [R1] - [R10], this thesis tackles various aspects of the dynamics of interacting ...
We address the real-time dynamics of lattice quantum spin models coupled to single or multiple Marko...
We have constructed an algorithm to treat quantum mechanical dynamics, such as the nonadiabatic tran...
We analyze an open many-body system that is strongly coupled at its boundaries to interacting quantu...
In this work we analyze the simultaneous emergence of diffusive energy transport and local thermaliz...
We investigate the dynamics of models involving deposition and evaporation of dimers, trimers, k-mer...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
Using the adaptive time-dependent density matrix renormalization group method, we numerically study ...
Understanding (i) the emergence of diffusion from truly microscopic principles continues to be a maj...
Using quantum Monte Carlo, we study the nonequilibrium transport of magnetization in large open stro...
We study the real-time evolution of large open quantum spin systems in two spatial dimensions, whose...
We consider a large quantum system with spins 12 whose dynamics is driven entirely by measurements o...
We develop a real-time full configuration-interaction quantum Monte Carlo approach to model driven-d...
We study experimentally the far-from-equilibrium dynamics in ferromagnetic Heisenberg quantum magnet...
15 pagesInternational audienceThe Lindblad dynamics with dephasing in the bulk and magnetization-dri...
Based on the works [R1] - [R10], this thesis tackles various aspects of the dynamics of interacting ...
We address the real-time dynamics of lattice quantum spin models coupled to single or multiple Marko...
We have constructed an algorithm to treat quantum mechanical dynamics, such as the nonadiabatic tran...
We analyze an open many-body system that is strongly coupled at its boundaries to interacting quantu...
In this work we analyze the simultaneous emergence of diffusive energy transport and local thermaliz...
We investigate the dynamics of models involving deposition and evaporation of dimers, trimers, k-mer...
In general, the dynamics of many-body quantum systems far-from-equilibrium is highly intricate, and ...
Using the adaptive time-dependent density matrix renormalization group method, we numerically study ...
Understanding (i) the emergence of diffusion from truly microscopic principles continues to be a maj...