Non-Abelian multigap topology with Euler class invariants in kagome NHC MOFs induces a controllable magnetononlinear Hall effect.
Title resolution pending
7 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
roles
background 1polarities
background 1representative citing papers
Anisotropic electron-phonon coupling plus screened Coulomb repulsion on Weyl-semimetal Fermi arcs yields the observed nodal i-wave superconducting gap when the surface bandwidth matches the phonon energy scale.
Circularly polarized light on Bi₂Se₃ generates four pairs of Floquet-Weyl points at one-photon resonance, with hole doping revealing a sharp anomalous Hall conductivity peak.
CrSb shows a nontrivial Berry phase approaching π from SdH oscillations and DFT band calculations, supporting topological semimetal states in this altermagnet.
Co2MnSn exhibits intrinsic Berry curvature-driven anomalous Hall conductivity ~500 S/cm and Nernst ~1.3 A/m/K at room temperature from topological Weyl points, enhanced to 1376 S/cm and 1.49 A/m/K at 150 K by Fermi level tuning.
Single crystals of EuNi2As2 show metamagnetic transitions in magnetoresistance, de Gennes-Friedel negative MR above TN, and DFT band structures that change strongly with magnetic order while DOS at EF changes by less than a factor of two.
The paper reviews Landau level spectroscopy as a tool for probing electronic band structures and interactions in solids, illustrated with examples from semiconductors, graphene, and topological materials.
citing papers explorer
-
Magnetononlinear Hall effect from multigap topology in metal-organic frameworks
Non-Abelian multigap topology with Euler class invariants in kagome NHC MOFs induces a controllable magnetononlinear Hall effect.
-
Mechanism for Nodal Topological Superconductivity on PtBi$_2$ Surface
Anisotropic electron-phonon coupling plus screened Coulomb repulsion on Weyl-semimetal Fermi arcs yields the observed nodal i-wave superconducting gap when the surface bandwidth matches the phonon energy scale.
-
Floquet-Weyl states at one-photon resonances in three-dimensional topological insulators
Circularly polarized light on Bi₂Se₃ generates four pairs of Floquet-Weyl points at one-photon resonance, with hole doping revealing a sharp anomalous Hall conductivity peak.
-
Topological nontrivial berry phase in altermagnet CrSb
CrSb shows a nontrivial Berry phase approaching π from SdH oscillations and DFT band calculations, supporting topological semimetal states in this altermagnet.
-
Intrinsic Berry Curvature Driven Anomalous Hall and Nernst Effect in Co$_2$MnSn
Co2MnSn exhibits intrinsic Berry curvature-driven anomalous Hall conductivity ~500 S/cm and Nernst ~1.3 A/m/K at room temperature from topological Weyl points, enhanced to 1376 S/cm and 1.49 A/m/K at 150 K by Fermi level tuning.
-
Magnetotransport and electronic band structure of EuNi$_2$As$_2$ antiferromagnet
Single crystals of EuNi2As2 show metamagnetic transitions in magnetoresistance, de Gennes-Friedel negative MR above TN, and DFT band structures that change strongly with magnetic order while DOS at EF changes by less than a factor of two.
-
Landau level spectroscopy in current solid state physics
The paper reviews Landau level spectroscopy as a tool for probing electronic band structures and interactions in solids, illustrated with examples from semiconductors, graphene, and topological materials.