Is The Trace Anomaly at its Minimum Value at Neutron Star Centers?
Abstract
While the equation of state (EOS) of neutron star (NS) matter has been extensively studied, the EOS-parameter or equivalently the dimensionless trace anomaly , which quantifies the balance between pressure and energy density , remains far less explored, especially in NS cores. Its bounds and density profile carry crucial information about the nature of superdense matter. Physically, the EOS-parameter represents the mean stiffness of matter accumulated from the stellar surface up to a given density. Based on the intrinsic structure of the Tolman--Oppenheimer--Volkoff equations, we show that decreases monotonically outward from the NS center, independent of any specific input NS EOS model. Furthermore, observational evidence of a peak in the speed-of-sound squared (SSS) density-profile near the center effectively rules out a valley and a subsequent peak in the radial profile of at similar densities, reinforcing its monotonic decrease. These model-independent relations impose strong constraints on the near-center behavior of the EOS-parameter , particularly demonstrating that the mean stiffness (or equivalently ) reaches a local maximum (minimum) at the center.
Keywords
Cite
@article{arxiv.2511.03714,
title = {Is The Trace Anomaly at its Minimum Value at Neutron Star Centers?},
author = {Bao-Jun Cai and Bao-An Li and Yu-Gang Ma},
journal= {arXiv preprint arXiv:2511.03714},
year = {2026}
}
Comments
Changed the title and added a comment. Phys. Rev. D (2025) in press