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Imprints of Early Universe on Gravitational Waves from First-Order Phase Transition in QCD
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We study the gravitational wave spectrum from the confinement-deconfinement phase transi-tion in the holographic QCD models for both light quark and heavy quark. We obtain the gravitationalwave spectrum in the deflagration, detonation and runaway cases for different chemical potentials and duration of the phase transition. We find that the gravitational wave spectrum could be observed by EPTA/IPTA and eLISA for large chemical potential and short duartion of phase transtions.
Forward citations
Cited by 2 Pith papers
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Finite temperature QCD crossover at non-zero chemical potential: A Dyson-Schwinger approach
An analytic Dyson-Schwinger derivation yields Tc(mu_B) for QCD; after fitting one scale to kappa2, the predicted kappa4 agrees with lattice.
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Unveiling the Gravitational Universe at \mu-Hz Frequencies
Proposal for a μ-Hz space-based gravitational wave interferometer to observe massive black hole binaries in early inspiral and low-frequency galactic binaries.
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