The covariance of chiral fermions theory
arXiv:1801.09447 · doi:10.1007/JHEP08(2019)011
Abstract
The quasiclassical theory of massless chiral fermions is considered. The effective action is derived using time-dependent variational principle which provides a clear interpretation of relevant canonical variables. As a result their transformation properties under the action of Lorentz group are derived from first principles.
11 pages, no figures; final version to appear in JHEP
References in corpus (10)
- Geometrodynamics of Spinning Light
- Berry Curvature, Triangle Anomalies, and the Chiral Magnetic Effect in Fermi Liquids
- Chiral Kinetic Theory
- Berry curvature and 4-dimensional monopole in relativistic chiral kinetic equation
- Lorentz Invariance in Chiral Kinetic Theory
- Chiral Magnetic Spiral
- Wigner translations and the observer-dependence of the position of masslesss spinning particles
- Wigner-Souriau translations and Lorentz symmetry of chiral fermions
- Second-order partition function of a non-interacting chiral fluid in 3+1 dimensions
- Microscopic Study of Vorticities in Relativistic Chiral Fermions