A perturbative analysis yields an EOS-insensitive scaling relation between tidal deformability Λ and central EOS parameter X = P_c/ε_c that enables direct inference of neutron-star core properties from inspiral GW observations.
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2 Pith papers cite this work. Polarity classification is still indexing.
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Trace anomaly of cold dense matter extracted from heavy-ion flow observables matches neutron-star posterior bands, establishing a composition-insensitive bridge between the two environments.
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A New Scaling of Neutron Star Tidal Deformability for Directly Probing the Core Equation of State
A perturbative analysis yields an EOS-insensitive scaling relation between tidal deformability Λ and central EOS parameter X = P_c/ε_c that enables direct inference of neutron-star core properties from inspiral GW observations.
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Trace Anomaly of Cold Dense Matter Constrained by Collective Flow
Trace anomaly of cold dense matter extracted from heavy-ion flow observables matches neutron-star posterior bands, establishing a composition-insensitive bridge between the two environments.