The dynamic engineering of band structures for ultracold atoms in optical lattices represents an innovative approach to understand and explore the fundamental principles of topological matter. In particular, the folded Floquet spectrum determines the associated band topology via band inversion. We experimentally and theoretically study two-frequency phase modulation to asymmetrically hybridize the lowest two bands of a one-dimensional lattice. Using quasi-degenerate perturbation theory in the extended Floquet space we derive an effective two-band model that quantitatively describes our setting. The energy gaps are experimentally probed via Landau-Zener transitions between Floquet-Bloch bands using an accelerated Bose-Einstein condensate. Se...
The concept of Floquet engineering is to subject a quantum system to time-periodic driving in such a...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
When a physical system is subjected to a strong external multifrequency drive, its dynamics can be c...
The dynamic engineering of band structures for ultracold atoms in optical lattices represents an inn...
Constructing new topological materials is of vital interest for the development of robust quantum ap...
The Floquet engineering opens the way to create new topological states without counterparts in stati...
Floquet engineering provides a toolbox for the realization of novel quantum phases without static co...
Floquet engineering is a versatile tool that uses periodic driving of a quantum system to build nove...
Quantum systems can be dynamically controlled using time-periodic external fields, leading to the co...
The hoppings of non-interacting particles in the optical dice lattice result in the gapless dispersi...
A 2D Fock-state lattice (FSL is constructed from the many-body states of two interacting two-mode qu...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
Floquet engineering is a powerful technique using periodic potentials, typically laser light, to dri...
The concept of Floquet engineering is to subject a quantum system to time-periodic driving in such a...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
When a physical system is subjected to a strong external multifrequency drive, its dynamics can be c...
The dynamic engineering of band structures for ultracold atoms in optical lattices represents an inn...
Constructing new topological materials is of vital interest for the development of robust quantum ap...
The Floquet engineering opens the way to create new topological states without counterparts in stati...
Floquet engineering provides a toolbox for the realization of novel quantum phases without static co...
Floquet engineering is a versatile tool that uses periodic driving of a quantum system to build nove...
Quantum systems can be dynamically controlled using time-periodic external fields, leading to the co...
The hoppings of non-interacting particles in the optical dice lattice result in the gapless dispersi...
A 2D Fock-state lattice (FSL is constructed from the many-body states of two interacting two-mode qu...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
Floquet engineering is a powerful technique using periodic potentials, typically laser light, to dri...
The concept of Floquet engineering is to subject a quantum system to time-periodic driving in such a...
We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands ...
When a physical system is subjected to a strong external multifrequency drive, its dynamics can be c...