Intermetallics are an important playground to stabilize a large variety of physical phenomena, arising from their complex crystal structure. The ease of their chemical tunabilty makes them suitable platforms to realize targeted electronic properties starting from the symmetries hidden in their unit cell. Here, we investigate the family of the recently discovered intermetallics M Co 2 Al 9 ( M = Sr , Ba) and we unveil their electronic structure. By using angle-resolved photoelectron spectroscopy and density functional theory calculations, we discover the existence of Dirac-like dispersions as ubiquitous features in this family, coming from the hidden kagome and honeycomb symmetries embedded in the unit cell. Finally, from calcula...
Nontrivial topology of Dirac semi-metals, Weyl semimetals, and nodal line semimetals (NLSMs) is deli...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...
International audienceWe present a thorough tight-binding analysis of the band structure of a wide v...
Intermetallics are an important playground to stabilize a large variety of physical phenomena, arisi...
The topological nontrivial material host exotic physical phenomena such as topo- logically protected...
The isolation of graphene in 2004 and the subsequent characterisation of its many remarkable propert...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
Kagome materials have emerged as a setting for emergent electronic phenomena that encompass differen...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
The band inversions that generate the topologically non-trivial band gaps of topological insulators ...
Funding: Leverhulme Trust, the Engineering and Physical Sciences Research Council, UK (Grant Nos. EP...
Due to an uprise in the variety of candidate compounds, kagome metals have recently gained significa...
Kagome lattice composed of transition-metal ions provides a great opportunity to explore the intertw...
Nontrivial topology of Dirac semi-metals, Weyl semimetals, and nodal line semimetals (NLSMs) is deli...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...
International audienceWe present a thorough tight-binding analysis of the band structure of a wide v...
Intermetallics are an important playground to stabilize a large variety of physical phenomena, arisi...
The topological nontrivial material host exotic physical phenomena such as topo- logically protected...
The isolation of graphene in 2004 and the subsequent characterisation of its many remarkable propert...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
Kagome materials have emerged as a setting for emergent electronic phenomena that encompass differen...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
Crystal geometry can greatly influence the emergent properties of quantum materials. As an example, ...
The band inversions that generate the topologically non-trivial band gaps of topological insulators ...
Funding: Leverhulme Trust, the Engineering and Physical Sciences Research Council, UK (Grant Nos. EP...
Due to an uprise in the variety of candidate compounds, kagome metals have recently gained significa...
Kagome lattice composed of transition-metal ions provides a great opportunity to explore the intertw...
Nontrivial topology of Dirac semi-metals, Weyl semimetals, and nodal line semimetals (NLSMs) is deli...
We study theoretically two-dimensional single-crystalline sheets of semiconductors that form a honey...
International audienceWe present a thorough tight-binding analysis of the band structure of a wide v...