4.8 Article

Postmerger Gravitational-Wave Signatures of Phase Transitions in Binary Mergers

期刊

PHYSICAL REVIEW LETTERS
卷 124, 期 17, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.124.171103

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资金

  1. Helmholtz Graduate School for Hadron and Ion Research (HGS-HIRe)
  2. PHAROS, COST Action [CA16214]
  3. LOEWE-Program in HIC for FAIR
  4. ERC Synergy Grant BlackHoleCam: Imaging the Event Horizon of Black Holes [610058]

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With the first detection of gravitational waves from a binary system of neutron stars GW170817, a new window was opened to study the properties of matter at and above nuclear-saturation density. Reaching densities a few times that of nuclear matter and temperatures up to 100 MeV, such mergers also represent potential sites for a phase transition (PT) from confined hadronic matter to deconfined quark matter. While the lack of a postmerger signal in GW170817 has prevented us from assessing experimentally this scenario, two theoretical studies have explored the postmerger gravitational-wave signatures of PTs in mergers of a binary system of neutron stars. We here extend and complete the picture by presenting a novel signature of the occurrence of a PT. More specifically, using fully general-relativistic hydrodynamic simulations and employing a suitably constructed equation of state that includes a PT, we present the occurrence of a delayed PT, i.e., a PT that develops only some time after the merger and produces a metastable object with a quark-matter core, i.e., a hypermassive hybrid star. Because in this scenario, the postmerger signal exhibits two distinct fundamental gravitational-wave frequencies-before and after the FT-the associated signature promises to be the strongest and cleanest among those considered so far, and one of the best signatures of the production of quark matter in the present Universe.

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