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A lattice Maxwell system with discrete space-time symmetry and local energy-momentum conservation

Classical Physics 2017-09-28 v1 Mathematical Physics math.MP Computational Physics Plasma Physics

Abstract

A lattice Maxwell system is developed with gauge-symmetry, symplectic structure and discrete space-time symmetry. Noether's theorem for Lie group symmetries is generalized to discrete symmetries for the lattice Maxwell system. As a result, the lattice Maxwell system is shown to admit a discrete local energy-momentum conservation law corresponding to the discrete space-time symmetry. These conservative properties make the discrete system an effective algorithm for numerically solving the governing differential equations on continuous space-time. Moreover, the lattice model, respecting all conservation laws and geometric structures, is as good as and probably more preferable than the continuous Maxwell model. Under the simulation hypothesis by Bostrom and in consistent with the discussion on lattice QCD by Beane et al., the two interpretations of physics laws on space-time lattice could be essentially the same.

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Cite

@article{arxiv.1709.09593,
  title  = {A lattice Maxwell system with discrete space-time symmetry and local energy-momentum conservation},
  author = {Jianyuan Xiao and Hong Qin and Yuan Shi and Jian Liu and Ruili Zhang},
  journal= {arXiv preprint arXiv:1709.09593},
  year   = {2017}
}

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12 pages