Coherent spin states and emergent de Sitter quasinormal modes
High Energy Physics - Theory
2023-12-15 v1
Abstract
As a toy model for the microscopic description of matter in de Sitter space, we consider a Hamiltonian acting on the spin-j representation of SU(2). This is a model with a finite-dimensional Hilbert space, from which quasinormal modes emerge in the large-spin limit. The path integral over coherent spin states can be evaluated at the semiclassical level and from it we find the single-particle de Sitter density of states, including 1/j corrections. Along the way, we discuss the use of quasinormal modes in quantum mechanics, starting from the paradigmatic upside-down harmonic oscillator.
Keywords
Cite
@article{arxiv.2312.08430,
title = {Coherent spin states and emergent de Sitter quasinormal modes},
author = {Klaas Parmentier},
journal= {arXiv preprint arXiv:2312.08430},
year = {2023}
}
Comments
32 pages + appendices, 13 figures, comments welcome!