The link between crystal and electronic structure is crucial for understanding structure-property relations in solid-state chemistry. In particular, it has been instrumental in understanding topological materials, where electrons behave differently than they would in conventional solids. Herein, we identify 1D Bi chains as a structural motif of interest for topological materials. We focus on Sm$_3$ZrBi$_5$, a new quasi-one-dimensional (1D) compound in the Ln$_3$MPn$_5$ (Ln = lanthanide; M = metal; Pn = pnictide) family that crystallizes in the P$6_{3}$/mcm space group. Density functional theory calculations indicate a complex, topologically non-trivial electronic structure that changes significantly in the presence of spin-orbit coupling. M...
The demand for energy-efficient devices has been growing rapidly due to the need for data-driven tec...
Topological quantum chemistry and symmetry-based indicators have facilitated large-scale searches fo...
We theoretically investigate an antiferromagnetic structure in a hexagonal zigzag-chain compound Ce$...
After the discovery of the first intrinsic antiferromagnetic topological insulator, MnBi2Te4, the se...
Topological materials featuring exotic band structures, unconventional current flow patterns, and em...
Bismuth is gaining importance as a key element of functional quantum materials. The effects of spin-...
The BaAl4 prototype structure and its derivatives have been identified to host several topological q...
LnSbTe (Ln - lanthanide) group of materials, belonging to ZrSiS/PbFCl (P4/nmm) structure type, is a ...
Using density functional theory calculations we study atomic, electronic, and magnetic structures an...
Using density functional theory based methods we report the structural, electronic and topological p...
Dirac semimetals show nontrivial physical properties and can host exotic quantum states like Weyl se...
The polynuclear compounds containing anisotropic metal ions often exhibit efficient barriers for blo...
Magnetic frustration, the competition among exchange interactions, often leads to novel magnetic gro...
The three-dimensional topological insulators Bi₂Se₃ and Bi₂Te₃ are model systems of a new class of m...
International audienceWe parameterize Hubbard and spin models for EtMe3Sb[Pd(dmit)2]2 from broken sy...
The demand for energy-efficient devices has been growing rapidly due to the need for data-driven tec...
Topological quantum chemistry and symmetry-based indicators have facilitated large-scale searches fo...
We theoretically investigate an antiferromagnetic structure in a hexagonal zigzag-chain compound Ce$...
After the discovery of the first intrinsic antiferromagnetic topological insulator, MnBi2Te4, the se...
Topological materials featuring exotic band structures, unconventional current flow patterns, and em...
Bismuth is gaining importance as a key element of functional quantum materials. The effects of spin-...
The BaAl4 prototype structure and its derivatives have been identified to host several topological q...
LnSbTe (Ln - lanthanide) group of materials, belonging to ZrSiS/PbFCl (P4/nmm) structure type, is a ...
Using density functional theory calculations we study atomic, electronic, and magnetic structures an...
Using density functional theory based methods we report the structural, electronic and topological p...
Dirac semimetals show nontrivial physical properties and can host exotic quantum states like Weyl se...
The polynuclear compounds containing anisotropic metal ions often exhibit efficient barriers for blo...
Magnetic frustration, the competition among exchange interactions, often leads to novel magnetic gro...
The three-dimensional topological insulators Bi₂Se₃ and Bi₂Te₃ are model systems of a new class of m...
International audienceWe parameterize Hubbard and spin models for EtMe3Sb[Pd(dmit)2]2 from broken sy...
The demand for energy-efficient devices has been growing rapidly due to the need for data-driven tec...
Topological quantum chemistry and symmetry-based indicators have facilitated large-scale searches fo...
We theoretically investigate an antiferromagnetic structure in a hexagonal zigzag-chain compound Ce$...