We introduce the concept of dark space phase transition, which may occur in open many-body quantum systems where irreversible decay, interactions, and quantum interference compete. Our study is based on a quantum many-body model that is inspired by classical nonequilibrium processes which feature phase transitions into an absorbing state, such as epidemic spreading. The possibility for different dynamical paths to interfere quantum mechanically results in collective dynamical behavior without classical counterpart. We identify two competing dark states, a trivial one corresponding to a classical absorbing state and an emergent one which is quantum coherent. We establish a nonequilibrium phase transition within this dark space that features ...
We investigate the competition of coherent and dissipative dynamics in many-body systems at continuo...
We consider the quantum nonequilibrium dynamics of systems where fermionic particles coherently hop ...
We study coherent superpositions of clockwise and anti-clockwise rotating intermediate complexes wit...
We introduce the concept of dark space phase transition, which may occur in open many-body quantum s...
We introduce and investigate an open many-body quantum system in which kinetically constrained coher...
We explore the non-equilibrium evolution and stationary states of an open many-body system which dis...
We explore the nonequilibrium evolution and stationary states of an open many-body system that displ...
We investigate an open many-body quantum system in which kinetically constrained coherent and dissip...
Dark states are stationary states of a dissipative, Lindblad-type time evolution with zero von Neuma...
Stochastic processes with absorbing states feature examples of non-equilibrium universal phenomena. ...
Quantum theory provides an extensive framework for the description of the equilibrium properties of ...
from the introduction: "[...] This thesis addresses the problem of the nonequilibrium time-evolution...
Understanding and probing phase transitions in nonequilibrium systems is an ongoing challenge in phy...
We investigate the competition of coherent and dissipative dynamics in many-body systems at continuo...
We consider the quantum nonequilibrium dynamics of systems where fermionic particles coherently hop ...
We study coherent superpositions of clockwise and anti-clockwise rotating intermediate complexes wit...
We introduce the concept of dark space phase transition, which may occur in open many-body quantum s...
We introduce and investigate an open many-body quantum system in which kinetically constrained coher...
We explore the non-equilibrium evolution and stationary states of an open many-body system which dis...
We explore the nonequilibrium evolution and stationary states of an open many-body system that displ...
We investigate an open many-body quantum system in which kinetically constrained coherent and dissip...
Dark states are stationary states of a dissipative, Lindblad-type time evolution with zero von Neuma...
Stochastic processes with absorbing states feature examples of non-equilibrium universal phenomena. ...
Quantum theory provides an extensive framework for the description of the equilibrium properties of ...
from the introduction: "[...] This thesis addresses the problem of the nonequilibrium time-evolution...
Understanding and probing phase transitions in nonequilibrium systems is an ongoing challenge in phy...
We investigate the competition of coherent and dissipative dynamics in many-body systems at continuo...
We consider the quantum nonequilibrium dynamics of systems where fermionic particles coherently hop ...
We study coherent superpositions of clockwise and anti-clockwise rotating intermediate complexes wit...