Structural Limitations on Constraining the Time Evolution of Dark Energy
arXiv:2512.14747 · doi:10.1016/j.physletb.2026.140237
Abstract
Cosmological constraints on a time-varying dark energy equation of state are fundamentally limited by the integral structure through which the equation of state enters cosmological observables. We rigorously derive the linear response kernel that maps perturbations in the equation of state ω(z) to comoving distance fluctuations δD(z). By adopting a Fourier mode expansion δω(z) = \sin(kz), we obtain the exact analytic form of the distance response in terms of Sine and Cosine integrals. We show that this mapping involves a double integration over redshift, which acts as an intrinsic low-pass filter with a characteristic \sim k^{-2} scaling in redshift space. This structural limitation is visualized in a schematic diagram and confirmed by observational verification using the full covariance matrix of the Pantheon+ supernova dataset. Our analysis reveals a steep hierarchy in Fisher eigenvalues where the information content drops by an order of magnitude already at the second eigenmode. Consequently, distance-based probes effectively constrain only a single dominant mode of ω(z). This implies that the difficulty in constraining dynamical parameters such as w_a is not due to data precision, but is a necessary consequence of the observable's integral nature, which renders it structurally blind to the instantaneous rate of change dω/da.
6 pages, 2 figures, Final version accepted for publication in Physics Letters B. Match published version
References in corpus (21)
- Dynamics of dark energy
- The Cosmological Constant and Dark Energy
- Exploring the Expansion History of the Universe
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: Cosmological Implications from two Decades of Spectroscopic Surveys at the Apache Point observatory
- The Pantheon+ Analysis: Cosmological Constraints
- DESI 2024 VI: Cosmological Constraints from the Measurements of Baryon Acoustic Oscillations
- The Pantheon+ Analysis: The Full Dataset and Light-Curve Release
- Cosmic Growth History and Expansion History
- Dynamical dark energy in light of the latest observations
- Reconstruction of dark energy and expansion dynamics using Gaussian processes
- Parameterization of Dark-Energy Properties: a Principal-Component Approach
- Nonparametric Dark Energy Reconstruction from Supernova Data
- The essence of quintessence and the cost of compression
- DESI 2024: Reconstructing Dark Energy using Crossing Statistics with DESI DR1 BAO data
- Fables of reconstruction: controlling bias in the dark energy equation of state
- Direct reconstruction of dark energy
- Quintessence and phantoms in light of DESI 2025
- Testing Einstein Gravity with Cosmic Growth and Expansion
- To Bin or Not To Bin: Decorrelating the Cosmic Equation of State
- Reconstructing dark energy with model independent methods after DESI DR2 BAO
- Reconstruction of dark energy using DESI DR2