Translational anomaly of chiral fermions in two dimensions
arXiv:1905.06735 · doi:10.1103/PhysRevD.99.105008
Abstract
It is well known that a quantized two-dimensional Weyl fermion coupled to gravity spoils general covariance and breaks the covariant conservation of the energy-momentum tensor. In this brief article, we point out that the quantum conservation of the momentum can also fail in flat spacetime, provided the Weyl fermion is coupled to a time-varying homogeneous electric field. This signals a quantum anomaly of the space-translation symmetry, which has not been highlighted in the literature so far.
Latex file, 5 pages, 1 figure. To appear in Phys. Rev. D