Time-reversal-symmetry-breaking Weyl semimetals (WSMs) have attracted great attention recently because of the interplay between intrinsic magnetism and topologically nontrivial electrons. Here, we present anomalous Hall and planar Hall effect studies on Co3Sn2S2 nanoflakes, a magnetic WSM hosting stacked Kagome lattice. The reduced thickness modifies the magnetic properties of the nanoflake, resulting in a 15-time larger coercive field compared with the bulk, and correspondingly modifies the transport properties. A 22% enhancement of the intrinsic anomalous Hall conductivity (AHC), as compared to bulk material, was observed. A magnetic field-modulated AHC, which may be related to the changing Weyl point separation with magnetic field, was a...
Time-reversal symmetry breaking allows for a rich set of magneto-transport properties related to ele...
Article published in Physical Review ResearchInternational audienceThe recently discovered material ...
The quantum Hall effect in three-dimensional Weyl semimetal (WSM) receives significant attention for...
Time-reversal-symmetry-breaking Weyl semimetals (WSMs) have attracted great attention recently becau...
Magnetic topological materials, which combine magnetism and topology, are expected to host emerging ...
Topological Weyl semimetals have recently attracted considerable attention among materials scientist...
Magnetic Weyl semimetals with broken time-reversal symmetry are expected to generate strong intrinsi...
Magnetic Weyl semimetals with broken time-reversal symmetry are expected to generate strong intrinsi...
Magnetic Weyl semimetals with broken time-reversal symmetry are expected to generate strong intrinsi...
Weyl semimetals feature linear band crossings with non-trivial topological properties. These (Weyl)...
Weyl semimetals feature linear band crossings with non-trivial topological properties. These (Weyl)...
Weyl semimetals (WSMs)—}materials that host exotic quasiparticles called Weyl fermions{—must break e...
The exotic responses of topological Weyl semimetals (WSMs) probed by electric ($\vec{E}$) and magnet...
Weyl semimetals (WSMs)—}materials that host exotic quasiparticles called Weyl fermions{—must break e...
Abstract The anomalous Hall effect (AHE), typically observed in ferromagnetic (FM) metals with broke...
Time-reversal symmetry breaking allows for a rich set of magneto-transport properties related to ele...
Article published in Physical Review ResearchInternational audienceThe recently discovered material ...
The quantum Hall effect in three-dimensional Weyl semimetal (WSM) receives significant attention for...
Time-reversal-symmetry-breaking Weyl semimetals (WSMs) have attracted great attention recently becau...
Magnetic topological materials, which combine magnetism and topology, are expected to host emerging ...
Topological Weyl semimetals have recently attracted considerable attention among materials scientist...
Magnetic Weyl semimetals with broken time-reversal symmetry are expected to generate strong intrinsi...
Magnetic Weyl semimetals with broken time-reversal symmetry are expected to generate strong intrinsi...
Magnetic Weyl semimetals with broken time-reversal symmetry are expected to generate strong intrinsi...
Weyl semimetals feature linear band crossings with non-trivial topological properties. These (Weyl)...
Weyl semimetals feature linear band crossings with non-trivial topological properties. These (Weyl)...
Weyl semimetals (WSMs)—}materials that host exotic quasiparticles called Weyl fermions{—must break e...
The exotic responses of topological Weyl semimetals (WSMs) probed by electric ($\vec{E}$) and magnet...
Weyl semimetals (WSMs)—}materials that host exotic quasiparticles called Weyl fermions{—must break e...
Abstract The anomalous Hall effect (AHE), typically observed in ferromagnetic (FM) metals with broke...
Time-reversal symmetry breaking allows for a rich set of magneto-transport properties related to ele...
Article published in Physical Review ResearchInternational audienceThe recently discovered material ...
The quantum Hall effect in three-dimensional Weyl semimetal (WSM) receives significant attention for...