English

Wheeler-DeWitt wavefunctions for 5d BKL dynamics, automorphic L-functions and complex primon gases

High Energy Physics - Theory 2025-07-14 v1 General Relativity and Quantum Cosmology

Abstract

The near-singularity BKL dynamics of five dimensional gravity and supergravity (and also an extended four-dimensional supergravity) is known to be given by the billiard problem of a particle within a fundamental domain of the Bianchi groups PSL(2,O)PSL(2,C)PSL(2,{\mathcal O}) \subset PSL(2,\mathbb{C}), acting on H3\mathbb{H}_3. Here O{\mathcal O} are the Gaussian or Eisenstein integers, which define a square or triangular lattice in C\mathbb{C}. The Wheeler-DeWitt wavefunctions near the singularity are, correspondingly, automorphic Maass forms of PSL(2,O)PSL(2,{\mathcal O}). We show how these wavefunctions are associated to certain LL-functions evaluated along their critical axis. Each of these LL-functions admits an Euler product representation over the complex primes POO{\mathcal{P}}_{\mathcal O} \subset {\mathcal O}. From this fact we write the LL-function as the trace over an auxiliary Hilbert space of charged harmonic oscillators, labeled by the complex primes PO{\mathcal{P}}_{\mathcal O}. In this way we have constructed a 'dual' primon gas partition function for the wavefunction of the universe close to a five dimensional cosmological singularity.

Keywords

Cite

@article{arxiv.2507.08788,
  title  = {Wheeler-DeWitt wavefunctions for 5d BKL dynamics, automorphic L-functions and complex primon gases},
  author = {Marine De Clerck and Sean A. Hartnoll and Ming Yang},
  journal= {arXiv preprint arXiv:2507.08788},
  year   = {2025}
}

Comments

40 pages, 7 figures

R2 v1 2026-07-01T03:56:57.700Z