Due to an uprise in the variety of candidate compounds, kagome metals have recently gained significant attention. Among other features, kagome metals host Dirac cones as a key band structure feature away from half filling, and potentially yield an exceptionally large fine structure, beyond values found in other 2D Dirac materials such as graphene. We investigate the possibility of chiral symmetry breaking in kagome metals. Based on a heuristic lattice model, we determine the critical coupling strength and the ordering pattern by means of a Schwinger-Dyson mean-field analysis. As the leading instability we identify a dimerization pattern which spontaneously opens an excitation gap at the Dirac point and breaks the chiral symmetry
We present a study of the low-temperature phases of the antiferromagnetic extended classical Heisenb...
Engineering non trivial topological phases in materials, specially skyrmion-like arrangements, has b...
The interesting properties of Kagome bands, consisting of Dirac bands and a flat band, have attracte...
Recent experiments on kagome metals AV$_3$Sb$_5$ (A=K,Rb,Cs) [M. Kang et al., Nat. Phys. 18, 301-308...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
Chirality, a fundamental structural property of crystals, can induce many unique topological quantum...
Chirality-or 'handedness'-is a symmetry property crucial to fields as diverse as biology, ...
International audienceThe kagome lattice is a paragon of geometrical frustration, long-studied for i...
Intermetallics are an important playground to stabilize a large variety of physical phenomena, arisi...
In breathing pyrochlores and kagomes, couplings between neighbouring tetrahedra and triangles are fr...
The kagome Heisenberg antiferromagnet (KHAFM) has an extensive zero temperature entropy, in direct v...
The competition between interactions in frustrated magnets allows a wide variety of new ground state...
The Heisenberg antiferromagnet on the kagome lattice is an archetypal instance of how large ground-s...
We study the magnetic properties and the superconducting pairing mediated by spin fluctuations on th...
Topological semimetals are a frontier of quantum materials. In multi-band electronic systems, topolo...
We present a study of the low-temperature phases of the antiferromagnetic extended classical Heisenb...
Engineering non trivial topological phases in materials, specially skyrmion-like arrangements, has b...
The interesting properties of Kagome bands, consisting of Dirac bands and a flat band, have attracte...
Recent experiments on kagome metals AV$_3$Sb$_5$ (A=K,Rb,Cs) [M. Kang et al., Nat. Phys. 18, 301-308...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
Chirality, a fundamental structural property of crystals, can induce many unique topological quantum...
Chirality-or 'handedness'-is a symmetry property crucial to fields as diverse as biology, ...
International audienceThe kagome lattice is a paragon of geometrical frustration, long-studied for i...
Intermetallics are an important playground to stabilize a large variety of physical phenomena, arisi...
In breathing pyrochlores and kagomes, couplings between neighbouring tetrahedra and triangles are fr...
The kagome Heisenberg antiferromagnet (KHAFM) has an extensive zero temperature entropy, in direct v...
The competition between interactions in frustrated magnets allows a wide variety of new ground state...
The Heisenberg antiferromagnet on the kagome lattice is an archetypal instance of how large ground-s...
We study the magnetic properties and the superconducting pairing mediated by spin fluctuations on th...
Topological semimetals are a frontier of quantum materials. In multi-band electronic systems, topolo...
We present a study of the low-temperature phases of the antiferromagnetic extended classical Heisenb...
Engineering non trivial topological phases in materials, specially skyrmion-like arrangements, has b...
The interesting properties of Kagome bands, consisting of Dirac bands and a flat band, have attracte...