4.4 Article

Symmetries and couplings of non-relativistic electrodynamics

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 11, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP11(2016)037

关键词

Gauge Symmetry; Global Symmetries; Space-Time Symmetries; Effective field theories

资金

  1. Marina Solvay fellowship
  2. ERC grant 'Symmetries and Dualities in Gravity and M-theory' of Marc Henneaux
  3. ERC STG grant [639220]
  4. Danish National Research Foundation project New horizons in particle and condensed matter physics from black holes
  5. Simons Center for Geometry and Physics, Stony Brook University
  6. European Research Council (ERC) [639220] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

We examine three versions of non-relativistic electrodynamics, known as the electric and magnetic limit theories of Maxwell's equations and Galilean electrodynamics (GED) which is the off-shell non-relativistic limit of Maxwell plus a free scalar field. For each of these three cases we study the couplings to non-relativistic dynamical charged matter (point particles and charged complex scalars). The GED theory contains besides the electric and magnetic potentials a so-called mass potential making the mass parameter a local function. The electric and magnetic limit theories can be coupled to twistless torsional Newton-Cartan geometry while GED can be coupled to an arbitrary torsional Newton-Cartan background. The global symmetries of the electric and magnetic limit theories on flat space consist in any dimension of the infinite dimensional Galilean conformal algebra and a U(1) current algebra. For the on-shell GED theory this symmetry is reduced but still infinite dimensional, while off-shell only the Galilei algebra plus two dilatations remain. Hence one can scale time and space independently, allowing Lifshitz scale symmetries for any value of the critical exponent z.

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