Mirror symmetry for new physics beyond the Standard Model in $4D$ spacetime
Abstract
The two discrete generators of the full Lorentz group in spacetime are typically chosen to be parity inversion symmetry and time reversal symmetry , which are responsible for the four topologically separate components of . Under general considerations of quantum field theory (QFT) with internal degrees of freedom, mirror symmetry is a natural extension of , while symmetry resembles 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/