Why ? Anthropic Selection in a + Axion Dark Energy Model
arXiv:2504.12852 · doi:10.1103/kwhj-vl35
Abstract
We study a dark energy model composed of a bare negative cosmological constant and a single ultra-light axion, motivated by the string axiverse. Assuming that intelligent observers arise and observe, as in our universe, the onset of dark-energy-driven acceleration following matter domination, and that this acceleration persists to the present, we derive nontrivial constraints on both the axion mass and the bare cosmological constant. The axion mass is bounded from above to avoid fine-tuning of the initial misalignment angle near the hilltop, and from below because too light axions cannot achieve accelerated expansion due to their limited energy budget. As a result, the anthropically allowed axion mass range typically lies around for a decay constant close to the Planck scale, where is the observed value of the Hubble constant. In this framework, the dark energy equation-of-state parameter generically deviates from by , providing a natural explanation for why may be expected. We also find that, for a decay constant slightly smaller than the Planck scale, the peak value of dark energy density is significantly smaller than the anthropic bound on the cosmological constant and can be close to the observed value. These outcomes are intriguingly consistent with recent DESI hints of time-varying dark energy, and offer a compelling anthropic explanation within the + axion framework.
9 pages, 8 figures, v3: version published in PRD, v2: references and appendix added; discussion expanded
References in corpus (17)
- DESI 2024 VI: Cosmological Constraints from the Measurements of Baryon Acoustic Oscillations
- DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological Constraints
- Interpreting DESI's evidence for evolving dark energy
- Quintessential interpretation of the evolving dark energy in light of DESI
- DESI DR2 Results I: Baryon Acoustic Oscillations from the Lyman Alpha Forest
- Dark energy in light of the early JWST observations: case for a negative cosmological constant?
- Do cosmological observations allow a negative ?
- Robustness of dark energy phenomenology across different parameterizations
- Negative cosmological constant in the dark energy sector: tests from JWST photometric and spectroscopic observations of high-redshift galaxies
- Model-independent cosmological inference post DESI DR1 BAO measurements
- Phenomenological emergent dark energy in the light of DESI Data Release 1
- Cosmological tests of quintessence in quantum gravity
- Kick it like DESI: PNGB quintessence with a dynamically generated initial velocity
- Anthropic Bound on Dark Radiation and its Implications for Reheating
- Isotropic cosmic birefringence from string axion domain walls without cosmic strings, and DESI results
- The impact of the cosmological constant on past and future star formation
- A possible anthropic solution to the Strong CP problem