Axions on de Sitter space
摘要
We study a massless minimally coupled compact scalar, or axion, on global -dimensional de Sitter space (dS). We quantise the theory canonically, determine the quantum dS charges, and find that the axion zero mode supplies a quantum-mechanical factor beyond the oscillator Fock space, . The full Hilbert space is , with the integer quantum-mechanical momentum on identified with the conserved shift charge. The 1-particle unitary irreducible representation (UIR) of the dS group, , captures the oscillator sector, but misses the zero mode. We find that the neutral 0-particle state is dS-invariant and normalisable. Charged 0-particle states are normalisable, but only invariant. This implies that geodesic observers related by dS boosts do not agree on the particle number in a charged sector, an effect absent in QFTs equipped only with the standard Bunch-Davies vacuum. We compute field-strength Wightman 2-point functions in charged sectors and find that they are Hadamard. For non-zero charge they are not dS-invariant at finite global times, but they are asymptotically so at early and late times. We complement this analysis with a Euclidean perspective. The ordinary -sphere path integral, , written in terms of Harish-Chandra characters, has access only to the neutral sector. Charged sectors require vertex-operator insertions, and summing over them gives a decorated sphere path integral, , that captures the entire Hilbert space, with denoting the partition function of a quantum rotor at a dimension-dependent effective temperature. Finally, in dS, we use the duality between an axion and a photon to translate our results to electromagnetism, where the axion zero mode gives rise to magnetic monopoles.
引用
@article{arxiv.2606.28858,
title = {Axions on de Sitter space},
author = {Vasileios A. Letsios and Stathis Vitouladitis},
journal= {arXiv preprint arXiv:2606.28858},
year = {2026}
}
备注
36 pages