We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven open quantum systems based on the full solution of the Maxwell–Bloch equation. In a resonant driving condition, we find that the transverse relaxation, also known as decoherence, significantly destructs the formation of Floquet states while the longitudinal relaxation does not directly affect it. Furthermore, by evaluating the quasienergy spectrum of the nonequilibrium steady states, we demonstrate that Rabi splitting can be observed as long as the decoherence time is as short as one third of the Rabi-cycle. Moreover, we find that Floquet states can be formed even under significant dissipation when the decoherence time is substantially short...
This thesis studies non-equilibrium open quantum systems where the dissipation is crucial to the ach...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven...
Quantum technology resorts to efficient utilization of quantum resources to realize technique innova...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
Floquet theory has spawned many exciting possibilities for electronic structure control with light, ...
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 theory has spawned many exciting possibilities for electronic structure control with light, ...
In Floquet engineering, periodic driving is used to realize novel phases of matter which are inacces...
In this thesis, we discuss the possibilities for suppression of decoherence, the loss of purity in a...
Due to the variety of tools available to control atomic, molecular, and optical (AMO) systems, they ...
Periodic driving and Floquet engineering have emerged as invaluable tools for controlling and uncove...
Coherent optical manipulation of electronic bandstructures via Floquet Engineering is a promising me...
This thesis studies non-equilibrium open quantum systems where the dissipation is crucial to the ach...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We theoretically investigate basic properties of nonequilibrium steady states of periodically-driven...
Quantum technology resorts to efficient utilization of quantum resources to realize technique innova...
External driving is emerging as a promising tool for exploring new phases in quantum systems. The in...
Floquet theory has spawned many exciting possibilities for electronic structure control with light, ...
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 theory has spawned many exciting possibilities for electronic structure control with light, ...
In Floquet engineering, periodic driving is used to realize novel phases of matter which are inacces...
In this thesis, we discuss the possibilities for suppression of decoherence, the loss of purity in a...
Due to the variety of tools available to control atomic, molecular, and optical (AMO) systems, they ...
Periodic driving and Floquet engineering have emerged as invaluable tools for controlling and uncove...
Coherent optical manipulation of electronic bandstructures via Floquet Engineering is a promising me...
This thesis studies non-equilibrium open quantum systems where the dissipation is crucial to the ach...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...
We investigate the conditions under which periodically driven quantum systems subject to dissipation...