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C-R-T Fractionalization in the First Quantized Hamiltonian Theory

Strongly Correlated Electrons 2026-05-05 v2 High Energy Physics - Phenomenology High Energy Physics - Theory Mathematical Physics math.MP Quantum Physics

Abstract

Recent research has revealed that the CRT symmetry for fermions exhibits a fractionalization distinct from the Z2C×Z2R×Z2T\mathbb{Z}_2^{\mathcal{C}}\times\mathbb{Z}_2^{\mathcal{R}}\times\mathbb{Z}_2^{\mathcal{T}} for scalar bosons. In fact, the CRT symmetry for fermions can be extended by internal symmetries such as fermion parity, thereby forming a group extension of the Z2\mathbb{Z}_2 direct product. Conventionally, a Majorana fermion is defined by one Dirac fermion with trivial charge conjugation. However, when the spacetime dimension d+1=5,6,7mod8d+1=5,6,7\bmod8, the real dimension of Majorana fermion (dimRχC(d,0)_{\mathbb{R}}\chi_{\mathcal{C}\ell(d,0)}) aligns with the real dimension of Dirac fermion (dimRψC(d)_{\mathbb{R}}\psi_{\mathcal{C}\ell(d)}), rather than being half, which necessitates the introduction of a symplectic Majorana fermion, defined by two Dirac fermions with trivial charge conjugation. To include these two types of Majorana fermions, we embed the theory in nRn_{\mathbb{R}} and define the Majorana fermion field as a representation of the real Clifford algebra with 8-fold periodicity. Within the Hamiltonian formalism, we identify the 8-fold CRT-internal symmetry groups across general dimensions. Similarly, Dirac fermion field is defined as a representation of the complex Clifford algebra with 2-fold periodicity. Interestingly, we discover that the CRT-internal symmetry groups exhibit an 8-fold periodicity that is distinct from that of the complex Clifford algebra. In certain dimensions where distinct mass terms can span a mass manifold, the CRT-internal symmetries can act non-trivially upon this mass manifold. Employing domain wall reduction method, we are able to elucidate the relationships between symmetries across different dimensions.

Keywords

Cite

@article{arxiv.2412.11958,
  title  = {C-R-T Fractionalization in the First Quantized Hamiltonian Theory},
  author = {Yang-Yang Li and Zheyan Wan and Juven Wang and Shing-Tung Yau and Yi-Zhuang You},
  journal= {arXiv preprint arXiv:2412.11958},
  year   = {2026}
}

Comments

54 pages, 39 tables, sequel to arXiv:2109.15320 and arXiv:2312.17126. Include symplectic Majorana in d+1=5,6,7 mod 8, and symplectic Majorana-Weyl in d+1=6 mod 8. Motivation: use CRT-internal symmetries to rule out fermion bilinear masses. Key result: systematically assigned CRT-internal symmetries in all spacetime dimensions for both Majorana and Dirac fermions. v2 update: correcting of typos