Fourfold-connected altermagnets alone produce first-order orbital versus second-order spin magnetizations under SOC, enabling a coaxial Hall effect with large AHE and tiny net moment.
Title resolution pending
8 Pith papers cite this work. Polarity classification is still indexing.
representative citing papers
Symmetry classification framework for unconventional magnetism identifies hybrid-parity and unconstrained-parity classes beyond altermagnets and odd-parity magnets, with computational example of combined spintronic effects.
A newly made organic salt shows canted antiferromagnetic order at 14 K and band calculations reveal spin splitting, establishing it as the second altermagnet candidate among κ-type BEDT-TTF conductors after κ-Cl.
Static lattice distortions from adiabatic electron-phonon coupling act as a tuning knob that alters the magnitude, anisotropy, phase, and chirality of noncollinear RKKY couplings in Rashba d-wave altermagnets.
Altermagnets host a giant nonperturbative magnetic orbital Hall effect that generates collinear orbital currents capable of switching perpendicular magnetization without external fields.
Linearly polarized light induces spin-selective topological phase transitions in d-wave altermagnets, with quantized thermal and electrical Hall responses satisfying the Wiedemann-Franz law.
2D spin-antiferroelectric altermagnets such as monolayer (CoCl)2Te are predicted to show giant spin splitting with spin currents switchable by in-plane electric field angle when hole-doped or gate polarity when electron-doped.
Symmetry analysis predicts anisotropic thermomagnonic torques in insulating altermagnets that induce domain-wall precession and direction-selective skyrmion motion under temperature gradients.
citing papers explorer
-
Spin-orbit magnetism in altermagnets
Fourfold-connected altermagnets alone produce first-order orbital versus second-order spin magnetizations under SOC, enabling a coaxial Hall effect with large AHE and tiny net moment.
-
Unconventional Magnetism: Symmetry Classification, Hybrid-parity and Unconstrained-parity Classes
Symmetry classification framework for unconventional magnetism identifies hybrid-parity and unconstrained-parity classes beyond altermagnets and odd-parity magnets, with computational example of combined spintronic effects.
-
The second altermagnet candidate in organic conductors: $\kappa$-(BEDT-TTF)$_2$$m$-HOOCC$_6$H$_4$SO$_3$
A newly made organic salt shows canted antiferromagnetic order at 14 K and band calculations reveal spin splitting, establishing it as the second altermagnet candidate among κ-type BEDT-TTF conductors after κ-Cl.
-
RKKY interaction in altermagnets with adiabatic electron-phonon coupling
Static lattice distortions from adiabatic electron-phonon coupling act as a tuning knob that alters the magnitude, anisotropy, phase, and chirality of noncollinear RKKY couplings in Rashba d-wave altermagnets.
-
Nonperturbative Magnetic Orbital Hall Effect in Altermagnets
Altermagnets host a giant nonperturbative magnetic orbital Hall effect that generates collinear orbital currents capable of switching perpendicular magnetization without external fields.
-
Light-Induced Topological Phase Transitions and Anomalous Thermal Transport in d-Wave Altermagnets
Linearly polarized light induces spin-selective topological phase transitions in d-wave altermagnets, with quantized thermal and electrical Hall responses satisfying the Wiedemann-Franz law.
-
Two-Dimensional Spin-Antiferroelectric Altermagnets with Giant Spin Splitting: From Model to Material Realization
2D spin-antiferroelectric altermagnets such as monolayer (CoCl)2Te are predicted to show giant spin splitting with spin currents switchable by in-plane electric field angle when hole-doped or gate polarity when electron-doped.
-
Thermomagnonic Torques in Insulating Altermagnets
Symmetry analysis predicts anisotropic thermomagnonic torques in insulating altermagnets that induce domain-wall precession and direction-selective skyrmion motion under temperature gradients.