Weakly inhomogeneous electric fields add a distinct quantum-metric contribution to Bloch oscillations, yielding oscillatory transport with an intrinsic part and a scattering-time-dependent part that can saturate at high fields.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
fields
cond-mat.mes-hall 3years
2026 3verdicts
UNVERDICTED 3representative citing papers
Centrosymmetric altermagnets exhibit giant magnetic-field-induced spin magnetization of order 10^{-2} μ_B nm^{-3} at ~10 mT, controlled solely by the spin-rotation quantum metric as the only symmetry-allowed linear quantum-geometric response.
Asymmetric scattering coupled to band geometry produces a PT-odd staggered spin polarization that generates significant NSOT in collinear antiferromagnets beyond conventional Drude processes.
citing papers explorer
-
Quantum-metric Bloch oscillations in weakly inhomogeneous electric fields
Weakly inhomogeneous electric fields add a distinct quantum-metric contribution to Bloch oscillations, yielding oscillatory transport with an intrinsic part and a scattering-time-dependent part that can saturate at high fields.
-
Giant Spin Magnetization from Quantum Geometry in Altermagnets
Centrosymmetric altermagnets exhibit giant magnetic-field-induced spin magnetization of order 10^{-2} μ_B nm^{-3} at ~10 mT, controlled solely by the spin-rotation quantum metric as the only symmetry-allowed linear quantum-geometric response.
-
Asymmetric Scattering-Induced Neel Spin-Orbit Torque in Antiferromagnets
Asymmetric scattering coupled to band geometry produces a PT-odd staggered spin polarization that generates significant NSOT in collinear antiferromagnets beyond conventional Drude processes.