English

Topological Quantum Dark Matter via Global Anomaly Cancellation

High Energy Physics - Theory 2025-03-14 v1 Strongly Correlated Electrons High Energy Physics - Phenomenology

Abstract

Standard Model (SM) with 15 Weyl fermions per family (lacking the 16th, the sterile right-handed neutrino νR\nu_R) suffers from mixed gauge-gravitational anomalies tied to baryon number plus or minus lepton number B±L{\bf B} \pm {\bf L} symmetry. Including νR\nu_R per family can cancel these anomalies, but when B±L{\bf B} \pm {\bf L} symmetry is preserved as discrete finite subgroups rather than a continuous U(1), the perturbative local anomalies become nonperturbative global anomalies. In this work, we systematically enumerate these gauge-gravitational global anomalies involving discrete B±L{\bf B} \pm {\bf L} that are enhanced from the fermion parity Z2F\mathbb{Z}_2^{\rm F} to Z2NF\mathbb{Z}_{2N}^{\rm F}, with N=2,3,4,6,9N=2,3,4,6,9, etc. The B±L{\bf B} \pm {\bf L} discreteness is constrained by multi-fermion deformations beyond-the-SM and the family number NfN_f. Unlike the free quadratic νR\nu_R Majorana mass gap preserving the minimal Z2F\mathbb{Z}_2^{\rm F}, we explore novel scenarios canceling (B±L)({\bf B} \pm {\bf L})-gravitational anomalies while preserving the Z2NF\mathbb{Z}_{2N}^{\rm F} discrete symmetries, featuring 4d interacting gapped topological orders (potentially with or without low-energy TQFT descriptions) or gapless sectors (e.g., conformal field theories). We propose anomalous sectors as quantum dark matter to cancel SM's global anomalies. We find the Nf=3N_f=3 uniqueness, when the Z2NF\mathbb{Z}_{2N}^{\rm F} representation from the faithful B+L{\bf B} + {\bf L} for baryons at N=Nc=3N=N_c=3 is extended to the faithful Q+NcL{\bf Q} + N_c {\bf L} for quarks at N=NcNf=9N=N_c N_f=9, this symmetry extension matches with the topological order dark matter construction. Key implications include: (1) a 5th force mediating between SM and dark matter via discrete gauge fields. (2) dark matter as topological order quantum matter with gapped anyon excitations at ends of extended defects. (3) topological leptogenesis.

Keywords

Cite

@article{arxiv.2502.21319,
  title  = {Topological Quantum Dark Matter via Global Anomaly Cancellation},
  author = {Juven Wang},
  journal= {arXiv preprint arXiv:2502.21319},
  year   = {2025}
}

Comments

Enumerations of more ${\bf B} \pm {\bf L}$ anomalies and dark matter constraints, beyond the previous toy model involving $\mathbb{Z}_{4,X}$ in arXiv:2006.16996, arXiv:2008.06499, arXiv:2012.15860