English

Remarks on M-theory coupling constants and M-brane tension quantizations

High Energy Physics - Theory 2016-09-06 v1

Abstract

In the absence of a complete M-theory, we gather certain quantum aspects of this theory, namely, M-2 and M-5 brane duality and their tension quantization rule 2κ2T2T5=2πn2\kappa^2 T_2 T_5 = 2 \pi n, the M-2 brane tension quantization T2=((2π)2/2κ2m)1/3T_2 =\bigg({(2\pi)^2/2\kappa^2 m}\bigg)^{1/3}, supersymmetry, perturbative gauge and gravitational anomaly cancellations, and the half-integral quantization of [GW/2πG^W/2\pi], and study the consistency among these quantum effects. We find: (1) The complete determination of Ho\u{r}ava-Witten's η=λ6/κ4\eta = \lambda^6 /\kappa^4 for M-theory on R10×S1/Z2R^{10} \times S^1/ Z_2 requires not only the cancellation of M-theory gauge anomaly but also that of the gravitational anomaly, the quantization of M-2 brane tension, and the recently recognized half-integral quantization of [GW/2π][G^W / 2 \pi]. (2) A well-defined quantum M-theory necessarily requires the presence of both M-2 and M-5 branes and allows only n=1n = 1 and m=1m =1 for the respectively quantized M-2 and M-5 brane tensions. Implications of the above along with other related issues are discussed.

Keywords

Cite

@article{arxiv.hep-th/9711014,
  title  = {Remarks on M-theory coupling constants and M-brane tension quantizations},
  author = {J. X. Lu},
  journal= {arXiv preprint arXiv:hep-th/9711014},
  year   = {2016}
}

Comments

21 pages, Latex

R2 v1 2026-07-22T16:07:40.605Z