Speed of sound is given attention in multi-messenger astronomy as it encodes information of the dense matter equation of state. Recently the trace anomaly was proposed as a more informative quantity. In this work, we statistically determine the speed of sound and trace anomaly and show that they are driven to their conformal values at the centers of maximally massive neutron stars. We show that the local peak in the speed of sound can be associated deconfinement along with percolation conditions in QCD matter
The existence of massive compact stars (M ≳ 2.1 M⊙) implies that the speed of sound exceeds the conf...
The theory governing the strong nuclear force-quantum chromodynamics-predicts that at sufficiently h...
Abstract Neutron stars are cosmic laboratories to study dense matter in quantum chromodynamics (QCD)...
Speed of sound is given attention in multi-messenger astronomy as it encodes information of the dens...
We discuss an interpretation that a peak in the sound velocity in neutron star matter, as suggested ...
The central speed of sound (SS) measures the stiffness of the Equation of State (EOS) of superdense ...
Determining the sound speed $c_s$ in compact stars is an important open question with numerous impli...
Measurements of neutron star masses, radii, and tidal deformability have direct connections to nucle...
We present the argument that "pseudo-conformal" symmetry permeates from low density near nuclear mat...
It has been conjectured that the speed of sound in holographic models with UV fixed points has an up...
The interior of neutron stars contains matter at the highest densities realized in our Universe. Int...
With the aim of exploring the evidence for or against phase transitions in cold and dense baryonic m...
One of the greatest interest and open problems in nuclear physics is the upper limit of the speed of...
Several observations of high-mass neutron stars (NSs), as well as the first historic detection of th...
We construct a physics-agnostic approach to the neutron star (NS) equation of state (EoS) based on a...
The existence of massive compact stars (M ≳ 2.1 M⊙) implies that the speed of sound exceeds the conf...
The theory governing the strong nuclear force-quantum chromodynamics-predicts that at sufficiently h...
Abstract Neutron stars are cosmic laboratories to study dense matter in quantum chromodynamics (QCD)...
Speed of sound is given attention in multi-messenger astronomy as it encodes information of the dens...
We discuss an interpretation that a peak in the sound velocity in neutron star matter, as suggested ...
The central speed of sound (SS) measures the stiffness of the Equation of State (EOS) of superdense ...
Determining the sound speed $c_s$ in compact stars is an important open question with numerous impli...
Measurements of neutron star masses, radii, and tidal deformability have direct connections to nucle...
We present the argument that "pseudo-conformal" symmetry permeates from low density near nuclear mat...
It has been conjectured that the speed of sound in holographic models with UV fixed points has an up...
The interior of neutron stars contains matter at the highest densities realized in our Universe. Int...
With the aim of exploring the evidence for or against phase transitions in cold and dense baryonic m...
One of the greatest interest and open problems in nuclear physics is the upper limit of the speed of...
Several observations of high-mass neutron stars (NSs), as well as the first historic detection of th...
We construct a physics-agnostic approach to the neutron star (NS) equation of state (EoS) based on a...
The existence of massive compact stars (M ≳ 2.1 M⊙) implies that the speed of sound exceeds the conf...
The theory governing the strong nuclear force-quantum chromodynamics-predicts that at sufficiently h...
Abstract Neutron stars are cosmic laboratories to study dense matter in quantum chromodynamics (QCD)...