The Quintom theory of dark energy after DESI DR2
arXiv:2505.24732 · doi:10.1093/nsr/nwag115
Abstract
Observations from DESI DR2 are challenging the CDM paradigm by suggesting that the equation-of-state parameter of dark energy evolves across , a phenomenon known as the Quintom scenario. Inspired by this development, we present a staged review of Quintom cosmology including its theoretical foundations, observational supports, and implications as well as possible extensions. We first trace the historical progression from Einstein's static cosmological constant to modern dynamical dark energy, summarizing recent cosmological constraints that favor an evolving along time. A key focus is the theoretical no-go theorem for dark energy showing that no single canonical field or perfect fluid model can smoothly cross the boundary. We then survey viable Quintom constructions, including two-field models, single-scalar fields with higher derivatives, modified gravity frameworks, interacting dark energy, and an effective field theory approach that unifies these mechanisms. Possible interactions of Quintom fields with ordinary matter and the potential roles in yielding non-singular universe solutions are discussed.
25 pages, 6 figures,
Cited by in corpus (7)
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- Model-independent late-universe measurements of and with the parametrization based on cosmic age-improved inverse distance ladder
- No preference for generalized emergent dark energy from current cosmological data
- UV-complete and stable Quintom Dark Energy models in the light of DESI DR2
- Breaking Free from the Swampland of Impossible Universes through the DESI Portal
- Dark Energy in the DESI Era: A Brief Review of Evidence, Beyond-CDM Interpretations, and Tensions