Engineering surfaces and interfaces of materials promises great potential in the field of heterostructures and quantum matter designers, with the opportunity to drive new many-body phases that are absent in the bulk compounds. Here, we focus on the magnetic Weyl kagome system Co3Sn2S2 and show how for the terminations of different samples the Weyl points connect differently, still preserving the bulk-boundary correspondence. Scanning tunneling microscopy has suggested such a scenario indirectly, and here, we probe the Fermiology of Co3Sn2S2 directly, by linking it to its real space surface distribution. By combining micro-ARPES and first-principles calculations, we measure the energy-momentum spectra and the Fermi surfaces of Co3Sn2S2 for d...
Co3Sn2S2 is a magnetic Weyl semimetal, in which ferromagnetic ordering at 177K is predicted to stabi...
The manipulation of topological states in quantum matter is an essential pursuit of fundamental phys...
Weyl semimetals are crystalline solids that host emergent relativistic Weyl fermions and have charac...
Engineering surfaces and interfaces of materials promises great potential in the field of heterostru...
Weyl semimetals with time-reversal symmetry breaking are expected to show various fascinating physic...
Very recently, the half-metallic compound Co3Sn2S2 was proposed to be a magnetic Weyl semimetal (WSM...
Very recently, the half-metallic compound Co3Sn2S2 was proposed to be a magnetic Weyl semimetal (WSM...
The discovery of topological order with material systems, and the unique electronic states necessita...
Weyl semimetals (WSMs)—}materials that host exotic quasiparticles called Weyl fermions{—must break e...
Based on the density functional theory, we examine the origin of ferromagnetism in the Weyl semimeta...
Weyl semimetals are crystalline solids that host emergent relativistic Weyl fermions and have charac...
The manipulation of topological states in quantum matter is an essential pursuit of fundamental phys...
Co3Sn2S2 is a magnetic Weyl semimetal, in which ferromagnetic ordering at 177K is predicted to stabi...
Topological matter is known to exhibit unconventional surface states and anomalous transport owing t...
Co3Sn2S2 is a magnetic Weyl semimetal, in which ferromagnetic ordering at 177K is predicted to stabi...
Co3Sn2S2 is a magnetic Weyl semimetal, in which ferromagnetic ordering at 177K is predicted to stabi...
The manipulation of topological states in quantum matter is an essential pursuit of fundamental phys...
Weyl semimetals are crystalline solids that host emergent relativistic Weyl fermions and have charac...
Engineering surfaces and interfaces of materials promises great potential in the field of heterostru...
Weyl semimetals with time-reversal symmetry breaking are expected to show various fascinating physic...
Very recently, the half-metallic compound Co3Sn2S2 was proposed to be a magnetic Weyl semimetal (WSM...
Very recently, the half-metallic compound Co3Sn2S2 was proposed to be a magnetic Weyl semimetal (WSM...
The discovery of topological order with material systems, and the unique electronic states necessita...
Weyl semimetals (WSMs)—}materials that host exotic quasiparticles called Weyl fermions{—must break e...
Based on the density functional theory, we examine the origin of ferromagnetism in the Weyl semimeta...
Weyl semimetals are crystalline solids that host emergent relativistic Weyl fermions and have charac...
The manipulation of topological states in quantum matter is an essential pursuit of fundamental phys...
Co3Sn2S2 is a magnetic Weyl semimetal, in which ferromagnetic ordering at 177K is predicted to stabi...
Topological matter is known to exhibit unconventional surface states and anomalous transport owing t...
Co3Sn2S2 is a magnetic Weyl semimetal, in which ferromagnetic ordering at 177K is predicted to stabi...
Co3Sn2S2 is a magnetic Weyl semimetal, in which ferromagnetic ordering at 177K is predicted to stabi...
The manipulation of topological states in quantum matter is an essential pursuit of fundamental phys...
Weyl semimetals are crystalline solids that host emergent relativistic Weyl fermions and have charac...