We demonstrate that the electronic structure of a material can be deformed into Floquet pseudobands with arbi-trarily tailored shapes. We achieve this goal with a combination of quantum optimal control theory and Floquet engineering. The power and versatility of this framework is demonstrated here by utilizing the independent -electron tight-binding description of the pi electronic system of graphene. We show several prototype examples focusing on the region around the K (Dirac) point of the Brillouin zone: creation of a gap with opposing flat valence and conduction bands, creation of a gap with opposing concave symmetric valence and conduction bands (which would correspond to a material with an effective negative electron-hole mass), and c...
The effect of electron–phonon coupling in materials can be interpreted as a dressing of the electron...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
3 páginas, 3 figuras.Could a laser field lead to the much sought-after tunable band gaps in graphene...
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 ...
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 consists in the modification of physical systems by the application of periodic ...
Floquet engineering, the control of quantum systems using periodic driving, is an old concept in con...
Based on a solution of the Floquet Hamiltonian we have studied the time evolution of electronic stat...
The effect of electron–phonon coupling in materials can be interpreted as a dressing of the electron...
Floquet engineering is a versatile tool that uses periodic driving of a quantum system to build nove...
The dynamic engineering of band structures for ultracold atoms in optical lattices represents an inn...
We demonstrate how to control the spectra and current flow of Dirac electrons in both a graphene she...
The effect of electron–phonon coupling in materials can be interpreted as a dressing of the electron...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
3 páginas, 3 figuras.Could a laser field lead to the much sought-after tunable band gaps in graphene...
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 ...
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 consists in the modification of physical systems by the application of periodic ...
Floquet engineering, the control of quantum systems using periodic driving, is an old concept in con...
Based on a solution of the Floquet Hamiltonian we have studied the time evolution of electronic stat...
The effect of electron–phonon coupling in materials can be interpreted as a dressing of the electron...
Floquet engineering is a versatile tool that uses periodic driving of a quantum system to build nove...
The dynamic engineering of band structures for ultracold atoms in optical lattices represents an inn...
We demonstrate how to control the spectra and current flow of Dirac electrons in both a graphene she...
The effect of electron–phonon coupling in materials can be interpreted as a dressing of the electron...
Controlling the properties of materials by driving them out of equilibrium is an exciting prospect t...
3 páginas, 3 figuras.Could a laser field lead to the much sought-after tunable band gaps in graphene...