Dark Energy Bubble as Dynamical Dark Energy: Properties and CMB Constraints
Batia Friedman-Shaw, Matthew C. Johnson, Katherine J. Mack
astro-ph.CO
Submitted: 2026-07-20
Comments: 41 pages, 18 figures
License: http://creativecommons.org/licenses/by/4.0/
The gist: Recent DESI results are in tension with the constant dark energy density predicted by the CDM model.
Terminology
Abstract
Recent DESI results are in tension with the constant dark energy density predicted by the CDM model. If dark energy is associated with the vacuum energy of a scalar field in a metastable state, it will undergo a first-order phase transition through the nucleation of bubbles containing a reduced dark energy density. In this paper, we explore the consequences of this model, where dark energy density varies in both space and time. We model a single bubble spacetime using the Israel junction conditions and derive each of the usual distance measures in this inhomogeneous cosmology. We find that the model predictions of Alcock-Paczynski distortion have features that align strikingly well with the DESI measurements if the dark energy phase transition occurred at roughly a redshift of 1.4 and if the bubble of lower dark energy density has roughly 10 % less dark energy density than the outer cosmology. Despite this feature, we find that the dark energy bubble is heavily constrained by the CMB which excludes the region of parameter space that reproduces the DESI BAO measurements. Still, the peculiar features in the distance measurements of the dark energy bubble cosmology serve as a useful toy model to motivate and inform future work in the currently poorly explored area of spatially varying dynamical dark energy.
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