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Scale-chiral symmetry, $\omega$ meson and dense baryonic matter

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arxiv 1612.04079 v1 pith:WF37SKN6 submitted 2016-12-13 nucl-th hep-ph

classification nucl-thhep-ph
keywords symmetrydensematterfixedgammahiddenlocalpoint
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

It is shown that explicitly broken scale symmetry is essential for dense skyrmion matter in hidden local symmetry theory. Consistency with the vector manifestation fixed point for the hidden local symmetry of the lowest-lying vector mesons and the dilaton limit fixed point for scale symmetry in dense matter is found to require that the anomalous dimension ($\gamma_{G^2}$) of the gluon field strength tensor squared ($G^2$) that represents the quantum trace anomaly should be $0 <\gamma_{G^2} <3$.

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  1. Nuclear matter properties from chiral-scale effective theory including a dilatonic scalar meson

    nucl-th 2024-12 reject novelty 6.0 of 10

    A nuclear matter model based on chiral-scale effective theory with a dilatonic meson reproduces saturation properties and yields a stiff high-density equation of state with neutron star masses near 2.8 to 3 solar masses.

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