English

Testing $\Lambda$CDM versus dynamical dark energy in one year: A DESI spectroscopic follow-up program for Rubin supernovae

Cosmology and Nongalactic Astrophysics 2026-04-22 v1

Abstract

Combined cosmological probes currently indicate that best-fit values in the w0waw_0-w_a parametrization of dynamical dark energy deviate from Λ\LambdaCDM by 3σ\sim3\sigma. In this work, we present a supernova survey capable of measuring dynamical dark energy at the >5σ>5\sigma level with just one year of data, starting in 2027. We first show that with the present values of w0w_0 and waw_a, new SNe Ia at redshifts z0.6z\lesssim0.6 near dark energy-matter equality would add the most constraining power. This is well within reach of the Vera C. Rubin Observatory and the Dark Energy Spectroscopic Instrument (DESI). Because cosmology measurements with SNe Ia quickly become systematics-limited, we focus on eliminating key systematics by using only a spectroscopically confirmed and volume-limited sample. In our proposed survey, SN alerts from Rubin would actively re-prioritize the scheduling of already-planned DESI tile visits. This would yield 7 500 near-peak transient spectra in one year without delaying DESI's primary survey. We forecast that if current best-fit w0waw_0-w_a values persist, combining just our volume-limited subset of 2 300 new SNe Ia at z<0.3z<0.3 with current SN, BAO, and CMB data would push the tension with Λ\LambdaCDM beyond 5σ5\sigma. This applies across a wide range of assumed uncertainties. To further circumvent systematics, we explore how DESI enables spectroscopic standardization via machine learning, offering a path toward a cosmology measurement independent of light-curve-based standardization. Finally, we discuss how early results from this program could inform future dark energy experiments.

Keywords

Cite

@article{arxiv.2604.18859,
  title  = {Testing $\Lambda$CDM versus dynamical dark energy in one year: A DESI spectroscopic follow-up program for Rubin supernovae},
  author = {Jannik Truong and Greg Aldering and Saul Perlmutter and David Rubin and David Schlegel},
  journal= {arXiv preprint arXiv:2604.18859},
  year   = {2026}
}
R2 v1 2026-07-01T12:27:17.709Z