Litcius/Paper detail

Massless Dirac magnons in the two dimensional van der Waals honeycomb magnet CrCl<sub>3</sub>

Lebing Chen, M. B. Stone, А. И. Колесников, Barry Winn, Wonhyuk Shon, Pengcheng Dai, Jae-Ho Chung

20212D Materials30 citationsDOIOpen Access PDF

Abstract

Two dimensional van der Waals ferromagnets with honeycomb structures are expected to host the bosonic version of Dirac particles in their magnon excitation spectra. Using inelastic neutron scattering, we study spin wave excitations in polycrystalline CrCl$_3$, which exhibits ferromagnetic honeycomb layers with antiferromagnetic stackings along the $c$-axis. For comparison, polycrystal samples of CrI$_3$ with different grain sizes are also studied. We find that the powder-averaged spin wave spectrum of CrCl$_3$ at $T$ = 2 K can be adequately explained by the two dimensional spin Hamiltonian including in-plane Heisenberg exchanges only. The observed excitation does not exhibit noticeable broadening in energy, which is in remarkable contrast to the substantial broadening observed in CrI$_3$. Based on these results, we conclude that the ferromagnetic phase of CrCl$_3$ hosts massless Dirac magnons and is thus not topological.

Topics & Concepts

MagnonMassless particlevan der Waals forceMagnetCondensed matter physicsHoneycombDirac (video compression format)PhysicsMathematical physicsQuantum mechanicsFerromagnetismMaterials scienceMoleculeComposite materialNeutrinoAdvanced Condensed Matter PhysicsTopological Materials and Phenomena2D Materials and Applications