We examine the presence and evolution of magnetic Dirac nodes in the Heisenberg honeycomb lattice. Using linear spin theory, we evaluate the collinear phase diagram as well as the change in the spin dynamics with various exchange interactions. We show that the ferromagnetic structure produces bosonic Dirac and Weyl points due to the competition between the interactions. Furthermore, it is shown that the criteria for magnetic Dirac nodes are coupled to the magnetic structure and not the overall crystal symmetry, where the breaking of inversion symmetry greatly affects the antiferromagnetic configurations. The tunability of the nodal points through variation of the exchange parameters leads to the possibility of controlling Dirac symmetries t...
In recent years, a lot of effort was made to investigate materials with a honeycomb lattice, experim...
We explore the magnetic properties of isolated a - b planes of trinuclear organometallic crystals, M...
We discuss the magnetic phases of the Hubbard model for the honeycomb lattice both in two and three ...
The discovery of the Dirac electron dispersion in graphene [A. H. Castro Neto, et al., The Electroni...
International audienceMotivated by the rich physics of honeycomb magnetic materials, we obtain the p...
CrBr_{3} is an excellent realization of the two-dimensional honeycomb ferromagnet, which offers a bo...
Dirac points lie at the heart of many fascinating phenomena in condensed matter physics, from massle...
The discovery of massless Dirac electrons in graphene and topological Dirac-Weyl materials has promp...
We report on the creation of Dirac points with adjustable properties in a tunable honeycomb optical ...
We consider layered decorated honeycomb lattices at two-thirds filling, as realized in some trinucle...
We report on the creation of Dirac points with adjustable properties in a tunable honeycomb optical ...
Topological magnon insulators constitute a growing field of research for their potential use as info...
This paper presents a connection between the topological properties of hardcore bosons and that of m...
We propose the existence of a symmetry-protected topological Dirac nodal-line (DNL) magnonic phase i...
We investigated the topological property of magnon bands in the collinear magnetic orders of zigzag ...
In recent years, a lot of effort was made to investigate materials with a honeycomb lattice, experim...
We explore the magnetic properties of isolated a - b planes of trinuclear organometallic crystals, M...
We discuss the magnetic phases of the Hubbard model for the honeycomb lattice both in two and three ...
The discovery of the Dirac electron dispersion in graphene [A. H. Castro Neto, et al., The Electroni...
International audienceMotivated by the rich physics of honeycomb magnetic materials, we obtain the p...
CrBr_{3} is an excellent realization of the two-dimensional honeycomb ferromagnet, which offers a bo...
Dirac points lie at the heart of many fascinating phenomena in condensed matter physics, from massle...
The discovery of massless Dirac electrons in graphene and topological Dirac-Weyl materials has promp...
We report on the creation of Dirac points with adjustable properties in a tunable honeycomb optical ...
We consider layered decorated honeycomb lattices at two-thirds filling, as realized in some trinucle...
We report on the creation of Dirac points with adjustable properties in a tunable honeycomb optical ...
Topological magnon insulators constitute a growing field of research for their potential use as info...
This paper presents a connection between the topological properties of hardcore bosons and that of m...
We propose the existence of a symmetry-protected topological Dirac nodal-line (DNL) magnonic phase i...
We investigated the topological property of magnon bands in the collinear magnetic orders of zigzag ...
In recent years, a lot of effort was made to investigate materials with a honeycomb lattice, experim...
We explore the magnetic properties of isolated a - b planes of trinuclear organometallic crystals, M...
We discuss the magnetic phases of the Hubbard model for the honeycomb lattice both in two and three ...