English

Mirror symmetry for new physics beyond the Standard Model in $4D$ spacetime

General Physics 2023-07-17 v3 High Energy Physics - Theory

Abstract

The two discrete generators of the full Lorentz group O(1,3)O(1,3) in 4D4D spacetime are typically chosen to be parity inversion symmetry PP and time reversal symmetry TT, which are responsible for the four topologically separate components of O(1,3)O(1,3). Under general considerations of quantum field theory (QFT) with internal degrees of freedom, mirror symmetry is a natural extension of PP, while CPCP symmetry resembles TT in spacetime. In particular, mirror symmetry is critical as it doubles the full Dirac fermion representation in QFT and essentially introduces a new sector of mirror particles. Its close connection to T-duality and Calabi-Yau mirror symmetry in string theory is clarified. Extension beyond the Standard model can then be constructed using both left- and right-handed heterotic strings guided by mirror symmetry. Many important implications such as supersymmetry, chiral anomalies, topological transitions, Higgs, neutrinos, and dark energy, are discussed.

Keywords

Cite

@article{arxiv.2212.13121,
  title  = {Mirror symmetry for new physics beyond the Standard Model in $4D$ spacetime},
  author = {Wanpeng Tan},
  journal= {arXiv preprint arXiv:2212.13121},
  year   = {2023}
}

Comments

25 pages, published in Symmetry, more related papers on https://www.wanpengtan.com/smm/