Topological states of fermionic matter can be induced by means of a suitably engineered dissipative dynamics. Dissipation then does not occur as a perturbation, but rather as the main resource for many-body dynamics, providing a targeted cooling into topological phases starting from arbitrary initial states. We explore the concept of topological order in this setting, developing and applying a general theoretical framework based on the system density matrix that replaces the wave function appropriate for the discussion of Hamiltonian ground-state physics. We identify key analogies and differences to the more conventional Hamiltonian scenario. Differences essentially arise from the fact that the properties of the spectrum and of the state of...
While the essential features of wide classes of phases of matter are well-captured by the convention...
Topological order provides a new paradigm to view phases of matter. Unlike conventional symmetry bre...
We show how second-order Floquet engineering can be employed to realize systems in which many-body l...
Topological states of fermionic matter can be induced by means of a suitably engineered dissipative ...
Out-of-equilibrium many-body physics is the fascinating study of complex systems that are subjected ...
The topological features of quantum many-body wavefunctions are known to have profound consequences ...
Topological phases of matter are understood to be characterized by particular configurations of enta...
We review recent developments in the study of out-of-equilibrium topological states of matter in iso...
This dissertation establishes and investigates new phenomena in diverse interacting many-body quantu...
Understanding the interplay between symmetries and phases lies at the heart of characterizing states...
We investigate the effects of dissipation and driving on topological order in superconducting nanow...
For decades, Landau’s theory of phase transition has provided a successful classification for quantu...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
Topological phase transitions represent a new paradigm beyond conventional Landau-Ginzburg symmetry ...
The discovery of topological phases of quantum matter has brought about a new paradigm in the unders...
While the essential features of wide classes of phases of matter are well-captured by the convention...
Topological order provides a new paradigm to view phases of matter. Unlike conventional symmetry bre...
We show how second-order Floquet engineering can be employed to realize systems in which many-body l...
Topological states of fermionic matter can be induced by means of a suitably engineered dissipative ...
Out-of-equilibrium many-body physics is the fascinating study of complex systems that are subjected ...
The topological features of quantum many-body wavefunctions are known to have profound consequences ...
Topological phases of matter are understood to be characterized by particular configurations of enta...
We review recent developments in the study of out-of-equilibrium topological states of matter in iso...
This dissertation establishes and investigates new phenomena in diverse interacting many-body quantu...
Understanding the interplay between symmetries and phases lies at the heart of characterizing states...
We investigate the effects of dissipation and driving on topological order in superconducting nanow...
For decades, Landau’s theory of phase transition has provided a successful classification for quantu...
We study the nonequilibrium dynamics of quenching through a quantum critical point in topological sy...
Topological phase transitions represent a new paradigm beyond conventional Landau-Ginzburg symmetry ...
The discovery of topological phases of quantum matter has brought about a new paradigm in the unders...
While the essential features of wide classes of phases of matter are well-captured by the convention...
Topological order provides a new paradigm to view phases of matter. Unlike conventional symmetry bre...
We show how second-order Floquet engineering can be employed to realize systems in which many-body l...