Theory anticipates that the in-plane px, py orbitals in a honeycomb lattice lead to potentially useful quantum electronic phases. So far, p orbital bands were only realized for cold atoms in optical lattices and for light and excitonpolaritons in photonic crystals. For electrons, in-plane p orbital physics is difficult to access since natural electronic honeycomb lattices, such as graphene and silicene, show strong s-p hybridization. Here, we report on electronic honeycomb lattices prepared on a Cu(111) surface in a scanning tunneling microscope that, by design, show (nearly) pure orbital bands, including the p orbital flat band and Dirac cone
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...
Theory anticipates that the in-plane px, py orbitals in a honeycomb lattice lead to potentially usef...
Theory anticipates that the in-plane px, py orbitals in a honeycomb lattice lead to potentially usef...
Theory anticipates that the in-plane px, py orbitals in a honeycomb lattice lead to potentially usef...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
‘What would happen if we could arrange the atoms one by one the way we want them?’ (Feynman, 1959) S...
Muffin-tin methods have been instrumental in the design of honeycomb lattices that show, in contrast...
Muffin-tin methods have been instrumental in the design of honeycomb lattices that show, in contrast...
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...
Theory anticipates that the in-plane px, py orbitals in a honeycomb lattice lead to potentially usef...
Theory anticipates that the in-plane px, py orbitals in a honeycomb lattice lead to potentially usef...
Theory anticipates that the in-plane px, py orbitals in a honeycomb lattice lead to potentially usef...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
In this thesis, we investigate different possibilities for artificial electron lattices. Electrons l...
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
‘What would happen if we could arrange the atoms one by one the way we want them?’ (Feynman, 1959) S...
Muffin-tin methods have been instrumental in the design of honeycomb lattices that show, in contrast...
Muffin-tin methods have been instrumental in the design of honeycomb lattices that show, in contrast...
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
Geometry, whether on the atomic or nanoscale, is a key factor for the electronic band structure of m...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...