Anomalous Hall Effect for semiclassical chiral fermions
arXiv:1409.4225
Abstract
Semiclassical chiral fermions manifest the anomalous spin-Hall effect: when put into a pure electric field they suffer a side jump, analogous to what happens to their massive counterparts in non-commutative mechanics. The transverse shift is consistent with the conservation of the angular momentum. In a pure magnetic field instead, spiraling motion is found. Motion in Hall-type perpendicular electric and magnetic fields is also studied.
Revised and extended version. 9 pages, 4 figures. arXiv admin note: text overlap with arXiv:1406.0718
References in corpus (7)
- Berry Curvature, Triangle Anomalies, and the Chiral Magnetic Effect in Fermi Liquids
- Lorentz Invariance in Chiral Kinetic Theory
- Chiral transport equation from the quantum Dirac Hamiltonian and the on-shell effective field theory
- Chiral Magnetic Spiral
- Berry Phase, Lorentz Covariance, and Anomalous Velocity for Dirac and Weyl Particles
- Chiral fermions as classical massless spinning particles
- Relativistic Particle and Relativistic Fluids: Magnetic Moment and Spin-Orbit Interactions