arXiv:1604.06889·v3·Nuclear Theory
The Role of Vector Mesons for Emergent Scale-Chiral Symmetry in Nuclear Interactions
Won-Gi Paeng · Mannque Rho
Abstract
When a light scalar dilaton and the light-quark vector mesons are incorporated into an effective scale-invariant hidden local symmetric (sHLS) Lagrangian, scale symmetry for and local gauge symmetry for , both invisible in QCD in the vacuum, arise as emergent symmetries at a density above , a phenomenon highly relevant for massive compact stars, hitherto unobserved in standard chiral pertubative approaches. What takes place involves a topology change at , and as the density increases beyond, (1) exposes a parity doubling in the nucleon structure, (2) triggers drastic change in the nuclear tensor force and (3) stiffens the nuclear symmetry energy as density exceeds . It results from an intricate interplay between the two hidden symmetries that the meson moves toward the vector manifestation (VM) fixed point where and the velocity of sound in the dense matter approaches the conformal symmetry value , indicating a presence of an infrared fixed point at which the dilaton mass vanishes.
Comments: revised for publication and replaced by arXiv:1611.09975