External driving is emerging as a promising tool for exploring new phases in quantum systems. The intrinsically nonequilibrium states that result, however, are challenging to describe and control. We study the steady states of a periodically driven one-dimensional electronic system, including the effects of radiative recombination, electron-phonon interactions, and the coupling to an external fermionic reservoir. Using a kinetic equation for the populations of the Floquet eigenstates, we show that the steady-state distribution can be controlled using the momentum and energy relaxation pathways provided by the coupling to phonon and Fermi reservoirs. In order to utilize the latter, we propose to couple the system and reservoir via an energy ...
Controlling and manipulating complex many-body quantum systems will be a key ingredient for the dev...
We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven...
The manifestations of topology are ubiquitous in condensed matter physics. One of the most striking ...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
Floquet engineering offers tantalizing opportunities for controlling the dynamics of quantum many-bo...
Floquet engineering offers tantalizing opportunities for controlling the dynamics of quantum many-bo...
Robust electronic edge or surface modes play key roles in the fascinating quantized responses exhibi...
I will discuss the open system dynamics and steady states of two dimensional Floquet topological ins...
I will discuss the open system dynamics and steady states of two dimensional Floquet topological ins...
Robust electronic edge or surface modes play key roles in the fascinating quantized responses exhibi...
Robust electronic edge or surface modes play key roles in the fascinating quantized responses exhibi...
Periodically-driven (Floquet) quantum systems are ubiquitous in science and technology. For example,...
We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven...
Controlling and manipulating complex many-body quantum systems will be a key ingredient for the dev...
We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven...
The manifestations of topology are ubiquitous in condensed matter physics. One of the most striking ...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
Floquet engineering offers tantalizing opportunities for controlling the dynamics of quantum many-bo...
Floquet engineering offers tantalizing opportunities for controlling the dynamics of quantum many-bo...
Robust electronic edge or surface modes play key roles in the fascinating quantized responses exhibi...
I will discuss the open system dynamics and steady states of two dimensional Floquet topological ins...
I will discuss the open system dynamics and steady states of two dimensional Floquet topological ins...
Robust electronic edge or surface modes play key roles in the fascinating quantized responses exhibi...
Robust electronic edge or surface modes play key roles in the fascinating quantized responses exhibi...
Periodically-driven (Floquet) quantum systems are ubiquitous in science and technology. For example,...
We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven...
Controlling and manipulating complex many-body quantum systems will be a key ingredient for the dev...
We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven...
The manifestations of topology are ubiquitous in condensed matter physics. One of the most striking ...