In this work, we study the magnon-magnon interaction effect in typical honeycomb ferromagnets consisting of van der Waals-bonded stacks of honeycomb layers, e.g., chromium trihalides CrX3 (X = F, Cl, Br, and I), that display two spin-wave modes (Dirac magnon). Using Green's function formalism with the presence of the Dzyaloshinskii-Moriya interaction, we obtain a spinor Dyson equation up to the second-order approximation by the cluster expansion method. Numerical calculations show prominent renormalizations of the single-particle spectrum. Furthermore, we propose a tunable renormalization effect using a parametric magnon amplification scheme. By amplifying the magnon population at different k points, the enabled renormalization eff...
Spintronics is based on the transport of information by the spin of electronsrather than charge curr...
The properties of Kitaev materials are attracting ever increasing attention owing to their exotic pr...
We propose the existence of a symmetry-protected topological Dirac nodal-line (DNL) magnonic phase i...
The discovery of the Dirac electron dispersion in graphene [A. H. Castro Neto, et al., The Electroni...
CrBr_{3} is an excellent realization of the two-dimensional honeycomb ferromagnet, which offers a bo...
Condensed matter systems admit topological collective excitations above a trivial ground state, an e...
Topological magnon insulators constitute a growing field of research for their potential use as info...
We report on the magnon spectrum of Kitaev-Heisenberg magnets and extract the parameters to model a ...
In this paper, we present a simple model of a three-dimensional insulating magnetic structure which ...
Magnons dominate the magnetic response of ferromagnetic two-dimensional crystals such as CrI3. Becau...
The discovery of massless Dirac electrons in graphene and topological Dirac-Weyl materials has promp...
As the spin excitation quanta in magnetic materials, the magnon is at the heart of the spintronics r...
Although theoretical modelling and inelastic neutron scattering measurements have indicated the pre...
31 pagesWe develop a phonon-magnon interaction model for the two-dimensional (2D) honeycomb ferromag...
We formulate a microscopic linear response theory of magnon pumping applicable to multiple-magnonic-...
Spintronics is based on the transport of information by the spin of electronsrather than charge curr...
The properties of Kitaev materials are attracting ever increasing attention owing to their exotic pr...
We propose the existence of a symmetry-protected topological Dirac nodal-line (DNL) magnonic phase i...
The discovery of the Dirac electron dispersion in graphene [A. H. Castro Neto, et al., The Electroni...
CrBr_{3} is an excellent realization of the two-dimensional honeycomb ferromagnet, which offers a bo...
Condensed matter systems admit topological collective excitations above a trivial ground state, an e...
Topological magnon insulators constitute a growing field of research for their potential use as info...
We report on the magnon spectrum of Kitaev-Heisenberg magnets and extract the parameters to model a ...
In this paper, we present a simple model of a three-dimensional insulating magnetic structure which ...
Magnons dominate the magnetic response of ferromagnetic two-dimensional crystals such as CrI3. Becau...
The discovery of massless Dirac electrons in graphene and topological Dirac-Weyl materials has promp...
As the spin excitation quanta in magnetic materials, the magnon is at the heart of the spintronics r...
Although theoretical modelling and inelastic neutron scattering measurements have indicated the pre...
31 pagesWe develop a phonon-magnon interaction model for the two-dimensional (2D) honeycomb ferromag...
We formulate a microscopic linear response theory of magnon pumping applicable to multiple-magnonic-...
Spintronics is based on the transport of information by the spin of electronsrather than charge curr...
The properties of Kitaev materials are attracting ever increasing attention owing to their exotic pr...
We propose the existence of a symmetry-protected topological Dirac nodal-line (DNL) magnonic phase i...