English

The Quantum Waves of Minkowski Spacetime And The Minimal Acceleration From Precanonical Quantum Gravity

General Relativity and Quantum Cosmology 2023-08-21 v1

Abstract

We construct the simplest solutions of the previously obtained precanonical Schr\"odinger equation for quantum gravity, which correspond to the plane waves on the spin connection bundle and reproduce the Minkowski spacetime on average. Quantum fluctuations lead to the emergence of the minimal acceleration a0a_0 related to the range of the Yukawa modes in the fibers of the spin connection bundle. This minimal acceleration is proportional to the square root of the cosmological constant Λ\Lambda generated by the operator re-ordering in the precanonical Schr\"odinger equation. Thus the mysterious connection between the minimal acceleration a0a_0 in the dynamics of galaxies as described by Milgrom's MOND and the cosmological constant emerges as an elementary effect of precanonical quantum gravity. We also argue that the observable values of a0a_0 and Λ\Lambda can be obtained when the scale of the parameter ϰ\varkappa introduced by precanonical quantization is subnuclear, in agreement with the previously established connection between the scale of ϰ\varkappa and the mass gap in quantum SU(2) Yang-Mills theory.

Keywords

Cite

@article{arxiv.2308.08738,
  title  = {The Quantum Waves of Minkowski Spacetime And The Minimal Acceleration From Precanonical Quantum Gravity},
  author = {I. V. Kanatchikov},
  journal= {arXiv preprint arXiv:2308.08738},
  year   = {2023}
}

Comments

10 pp. Appeared as doi:10.1088/1742-6596/2533/1/012037 in DICE2022 Proceedings