Astrophysical Implications of Equation of State for Hadron-Quark Mixed Phase: Compact Stars and Stellar Collapses
arXiv:0804.0661 · doi:10.1103/PhysRevD.77.103006
Abstract
We construct an equation of state including the hadron-quark phase transition. The mixed phase is obtained by the Gibbs conditions for finite temperature. We adopt the equation of state based on the relativistic mean field theory for the hadronic phase taking into account pions. As for the quark phase, the MIT bag model of the deconfined 3-flavor strange quark matter is used. As a result, our equation of state is thermodynamically stable and exhibits qualitatively the desired properties of hadron-quark mixed matter, such as the temperature dependence of the transition density. The pions raise the transition density because they make the equation of state softer. Using the equation of state constructed here, we study its astrophysical implications. The maximum mass of compact stars is investigated, and our equation of state is consistent with recent observations. We also compute the collapse of a massive star with 100 solar masses using our equation of state and find that the interval time from the bounce to the black hole formation becomes shorter for the model with pions and quarks. The pions and quarks affect the total energy of the emitted neutrinos because the duration time of the neutrino emission becomes shorter. The neutrino luminosity rises under the effect of pions since the density of the proto-neutron star becomes high.
8 figures, accepted for publication in PRD
References in corpus (11)
- The order of the quantum chromodynamics transition predicted by the standard model of particle physics
- The QCD transition temperature: results with physical masses in the continuum limit
- The transition temperature in QCD
- Neutrino signals from the formation of black hole: a probe of equation of state of dense matter
- Hybrid protoneutron stars with the MIT bag model
- Quark matter in neutron stars within the Nambu - Jona-Lasinio model and confinement
- Magnetorotational collapse of very massive stars to black holes in full general relativity
- The quark core of protoneutron stars in the phase diagram of quark matter
- A Formation Mechanism of Collapsar Black Hole -- early evolution phase
- Effects of QCD phase transition on gravitational radiation from two-dimensional collapse and bounce of massive stars
- Phase transition from hadronic matter to quark matter
Cited by in corpus (5)
- Signals of the QCD phase transition in core-collapse supernovae
- Dynamics and neutrino signal of black hole formation in non-rotating failed supernovae. II. progenitor dependence
- Lepton effects on the proto-neutron stars with the hadron-quark mixed phase in the Nambu-Jona-Lasinio model
- A new possible quark-hadron mixed phase in protoneutron stars
- Quark-Novae, cosmic reionization, and early r-process element production