English

Is The Trace Anomaly at its Minimum Value at Neutron Star Centers?

High Energy Astrophysical Phenomena 2026-01-06 v2 High Energy Physics - Phenomenology High Energy Physics - Theory Nuclear Experiment Nuclear Theory

Abstract

While the equation of state (EOS) P(ε)P(\varepsilon) of neutron star (NS) matter has been extensively studied, the EOS-parameter ϕ=P/ε\phi = P/\varepsilon or equivalently the dimensionless trace anomaly Δ=1/3ϕ\Delta = 1/3 - \phi, which quantifies the balance between pressure PP and energy density ε\varepsilon, 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 ϕ\phi 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 ϕ\phi 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 ϕ\phi at similar densities, reinforcing its monotonic decrease. These model-independent relations impose strong constraints on the near-center behavior of the EOS-parameter ϕ\phi, particularly demonstrating that the mean stiffness (or equivalently Δ\Delta) 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